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Merge pull request #9947 from mjstapp/mpls_incoming
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718e3744 1/* Kernel communication using routing socket.
2 * Copyright (C) 1999 Kunihiro Ishiguro
3 *
4 * This file is part of GNU Zebra.
5 *
6 * GNU Zebra is free software; you can redistribute it and/or modify it
7 * under the terms of the GNU General Public License as published by the
8 * Free Software Foundation; either version 2, or (at your option) any
9 * later version.
10 *
11 * GNU Zebra is distributed in the hope that it will be useful, but
12 * WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14 * General Public License for more details.
15 *
896014f4
DL
16 * You should have received a copy of the GNU General Public License along
17 * with this program; see the file COPYING; if not, write to the Free Software
18 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
718e3744 19 */
20
21#include <zebra.h>
ddfeb486
DL
22
23#ifndef HAVE_NETLINK
24
8ccc7e80 25#include <net/if_types.h>
fe6c7157 26#ifdef __OpenBSD__
d3e2c74a
RW
27#include <netmpls/mpls.h>
28#endif
718e3744 29
30#include "if.h"
31#include "prefix.h"
32#include "sockunion.h"
33#include "connected.h"
34#include "memory.h"
35#include "ioctl.h"
36#include "log.h"
718e3744 37#include "table.h"
38#include "rib.h"
edd7c245 39#include "privs.h"
78104b9b 40#include "vrf.h"
174482ef 41#include "lib_errors.h"
718e3744 42
a37bd5e0 43#include "zebra/rt.h"
718e3744 44#include "zebra/interface.h"
3801e764 45#include "zebra/zebra_router.h"
718e3744 46#include "zebra/debug.h"
ec1a4283 47#include "zebra/kernel_socket.h"
8f7d9fc0 48#include "zebra/rib.h"
98c15db6 49#include "zebra/zebra_errors.h"
01ce7cba 50#include "zebra/zebra_ptm.h"
718e3744 51
edd7c245 52extern struct zebra_privs_t zserv_privs;
53
4bfbea8c 54/*
cfa0ed09
GT
55 * Historically, the BSD routing socket has aligned data following a
56 * struct sockaddr to sizeof(long), which was 4 bytes on some
57 * platforms, and 8 bytes on others. NetBSD 6 changed the routing
58 * socket to align to sizeof(uint64_t), which is 8 bytes. OS X
59 * appears to align to sizeof(int), which is 4 bytes.
4bfbea8c 60 *
cfa0ed09
GT
61 * Alignment of zero-sized sockaddrs is nonsensical, but historically
62 * BSD defines RT_ROUNDUP(0) to be the alignment interval (rather than
63 * 0). We follow this practice without questioning it, but it is a
b72aae2e 64 * bug if frr calls ROUNDUP with 0.
4bfbea8c 65 */
cb800e35
RZ
66#ifdef __APPLE__
67#define ROUNDUP_TYPE int
68#else
69#define ROUNDUP_TYPE long
70#endif
cfa0ed09
GT
71
72/*
73 * Because of these varying conventions, the only sane approach is for
74 * the <net/route.h> header to define some flavor of ROUNDUP macro.
75 */
e7f0e649 76
cb800e35 77/* OS X (Xcode as of 2014-12) is known not to define RT_ROUNDUP */
cfa0ed09
GT
78#if defined(RT_ROUNDUP)
79#define ROUNDUP(a) RT_ROUNDUP(a)
80#endif /* defined(RT_ROUNDUP) */
81
82/*
83 * If ROUNDUP has not yet been defined in terms of platform-provided
84 * defines, attempt to cope with heuristics.
85 */
86#if !defined(ROUNDUP)
87
88/*
adf580f7
DL
89 * If you're porting to a platform that changed RT_ROUNDUP but doesn't
90 * have it in its headers, this will break rather obviously and you'll
91 * have to fix it here.
cfa0ed09 92 */
d62a17ae 93#define ROUNDUP(a) \
94 ((a) > 0 ? (1 + (((a)-1) | (sizeof(ROUNDUP_TYPE) - 1))) \
95 : sizeof(ROUNDUP_TYPE))
cfa0ed09
GT
96
97#endif /* defined(ROUNDUP) */
98
cb800e35
RZ
99
100#if defined(SA_SIZE)
101/* SAROUNDUP is the only thing we need, and SA_SIZE provides that */
102#define SAROUNDUP(a) SA_SIZE(a)
103#else /* !SA_SIZE */
4bfbea8c 104/*
105 * Given a pointer (sockaddr or void *), return the number of bytes
106 * taken up by the sockaddr and any padding needed for alignment.
107 */
6f0e3f6e 108#if defined(HAVE_STRUCT_SOCKADDR_SA_LEN)
4bfbea8c 109#define SAROUNDUP(X) ROUNDUP(((struct sockaddr *)(X))->sa_len)
56c1f7d8 110#else
4bfbea8c 111/*
112 * One would hope all fixed-size structure definitions are aligned,
113 * but round them up nonetheless.
114 */
d62a17ae 115#define SAROUNDUP(X) \
116 (((struct sockaddr *)(X))->sa_family == AF_INET \
117 ? ROUNDUP(sizeof(struct sockaddr_in)) \
118 : (((struct sockaddr *)(X))->sa_family == AF_INET6 \
119 ? ROUNDUP(sizeof(struct sockaddr_in6)) \
120 : (((struct sockaddr *)(X))->sa_family == AF_LINK \
121 ? ROUNDUP(sizeof(struct sockaddr_dl)) \
122 : sizeof(struct sockaddr))))
6f0e3f6e 123#endif /* HAVE_STRUCT_SOCKADDR_SA_LEN */
718e3744 124
e7f0e649
DL
125#endif /* !SA_SIZE */
126
718e3744 127/* Routing socket message types. */
d62a17ae 128const struct message rtm_type_str[] = {{RTM_ADD, "RTM_ADD"},
129 {RTM_DELETE, "RTM_DELETE"},
130 {RTM_CHANGE, "RTM_CHANGE"},
131 {RTM_GET, "RTM_GET"},
132 {RTM_LOSING, "RTM_LOSING"},
133 {RTM_REDIRECT, "RTM_REDIRECT"},
134 {RTM_MISS, "RTM_MISS"},
7f7651eb 135#ifdef RTM_LOCK
d62a17ae 136 {RTM_LOCK, "RTM_LOCK"},
7f7651eb 137#endif /* RTM_LOCK */
9458b819 138#ifdef OLDADD
d62a17ae 139 {RTM_OLDADD, "RTM_OLDADD"},
9458b819
GT
140#endif /* RTM_OLDADD */
141#ifdef RTM_OLDDEL
d62a17ae 142 {RTM_OLDDEL, "RTM_OLDDEL"},
9458b819 143#endif /* RTM_OLDDEL */
5f11807b 144#ifdef RTM_RESOLVE
d62a17ae 145 {RTM_RESOLVE, "RTM_RESOLVE"},
5f11807b 146#endif /* RTM_RESOLVE */
d62a17ae 147 {RTM_NEWADDR, "RTM_NEWADDR"},
148 {RTM_DELADDR, "RTM_DELADDR"},
149 {RTM_IFINFO, "RTM_IFINFO"},
718e3744 150#ifdef RTM_OIFINFO
d62a17ae 151 {RTM_OIFINFO, "RTM_OIFINFO"},
718e3744 152#endif /* RTM_OIFINFO */
153#ifdef RTM_NEWMADDR
d62a17ae 154 {RTM_NEWMADDR, "RTM_NEWMADDR"},
718e3744 155#endif /* RTM_NEWMADDR */
156#ifdef RTM_DELMADDR
d62a17ae 157 {RTM_DELMADDR, "RTM_DELMADDR"},
718e3744 158#endif /* RTM_DELMADDR */
159#ifdef RTM_IFANNOUNCE
d62a17ae 160 {RTM_IFANNOUNCE, "RTM_IFANNOUNCE"},
718e3744 161#endif /* RTM_IFANNOUNCE */
d62a17ae 162 {0}};
163
164static const struct message rtm_flag_str[] = {{RTF_UP, "UP"},
165 {RTF_GATEWAY, "GATEWAY"},
166 {RTF_HOST, "HOST"},
167 {RTF_REJECT, "REJECT"},
168 {RTF_DYNAMIC, "DYNAMIC"},
169 {RTF_MODIFIED, "MODIFIED"},
170 {RTF_DONE, "DONE"},
718e3744 171#ifdef RTF_MASK
d62a17ae 172 {RTF_MASK, "MASK"},
718e3744 173#endif /* RTF_MASK */
e6f148e6 174#ifdef RTF_CLONING
d62a17ae 175 {RTF_CLONING, "CLONING"},
e6f148e6 176#endif /* RTF_CLONING */
23b1f400 177#ifdef RTF_XRESOLVE
d62a17ae 178 {RTF_XRESOLVE, "XRESOLVE"},
23b1f400 179#endif /* RTF_XRESOLVE */
c54632ec 180#ifdef RTF_LLINFO
d62a17ae 181 {RTF_LLINFO, "LLINFO"},
c54632ec 182#endif /* RTF_LLINFO */
d62a17ae 183 {RTF_STATIC, "STATIC"},
184 {RTF_BLACKHOLE, "BLACKHOLE"},
6fe70d1b 185#ifdef RTF_PRIVATE
d62a17ae 186 {RTF_PRIVATE, "PRIVATE"},
6fe70d1b 187#endif /* RTF_PRIVATE */
d62a17ae 188 {RTF_PROTO1, "PROTO1"},
189 {RTF_PROTO2, "PROTO2"},
718e3744 190#ifdef RTF_PRCLONING
d62a17ae 191 {RTF_PRCLONING, "PRCLONING"},
718e3744 192#endif /* RTF_PRCLONING */
193#ifdef RTF_WASCLONED
d62a17ae 194 {RTF_WASCLONED, "WASCLONED"},
718e3744 195#endif /* RTF_WASCLONED */
196#ifdef RTF_PROTO3
d62a17ae 197 {RTF_PROTO3, "PROTO3"},
718e3744 198#endif /* RTF_PROTO3 */
199#ifdef RTF_PINNED
d62a17ae 200 {RTF_PINNED, "PINNED"},
718e3744 201#endif /* RTF_PINNED */
202#ifdef RTF_LOCAL
d62a17ae 203 {RTF_LOCAL, "LOCAL"},
718e3744 204#endif /* RTF_LOCAL */
205#ifdef RTF_BROADCAST
d62a17ae 206 {RTF_BROADCAST, "BROADCAST"},
718e3744 207#endif /* RTF_BROADCAST */
208#ifdef RTF_MULTICAST
d62a17ae 209 {RTF_MULTICAST, "MULTICAST"},
718e3744 210#endif /* RTF_MULTICAST */
6fe70d1b 211#ifdef RTF_MULTIRT
d62a17ae 212 {RTF_MULTIRT, "MULTIRT"},
6fe70d1b 213#endif /* RTF_MULTIRT */
214#ifdef RTF_SETSRC
d62a17ae 215 {RTF_SETSRC, "SETSRC"},
6fe70d1b 216#endif /* RTF_SETSRC */
d62a17ae 217 {0}};
718e3744 218
219/* Kernel routing update socket. */
220int routing_sock = -1;
221
80776aec
MS
222/* Kernel dataplane routing update socket, used in the dataplane pthread
223 * context.
224 */
225int dplane_routing_sock = -1;
226
718e3744 227/* Yes I'm checking ugly routing socket behavior. */
228/* #define DEBUG */
229
19fb538d 230size_t _rta_get(caddr_t sap, void *destp, size_t destlen, bool checkaf);
86c57af5 231size_t rta_get(caddr_t sap, void *dest, size_t destlen);
19fb538d 232size_t rta_getattr(caddr_t sap, void *destp, size_t destlen);
86c57af5 233size_t rta_getsdlname(caddr_t sap, void *dest, short *destlen);
5b62211d 234const char *rtatostr(unsigned int flags, char *buf, size_t buflen);
86c57af5 235
718e3744 236/* Supported address family check. */
d62a17ae 237static inline int af_check(int family)
718e3744 238{
d62a17ae 239 if (family == AF_INET)
240 return 1;
241 if (family == AF_INET6)
242 return 1;
243 return 0;
718e3744 244}
6b0655a2 245
19fb538d 246size_t _rta_get(caddr_t sap, void *destp, size_t destlen, bool checkaf)
86c57af5
RZ
247{
248 struct sockaddr *sa = (struct sockaddr *)sap;
75e710df 249 struct sockaddr_dl *sdl;
86c57af5
RZ
250 uint8_t *dest = destp;
251 size_t tlen, copylen;
252
253#ifdef HAVE_STRUCT_SOCKADDR_SA_LEN
254 copylen = sa->sa_len;
255 tlen = (copylen == 0) ? sizeof(ROUNDUP_TYPE) : ROUNDUP(copylen);
256#else /* !HAVE_STRUCT_SOCKADDR_SA_LEN */
257 copylen = tlen = SAROUNDUP(sap);
258#endif /* !HAVE_STRUCT_SOCKADDR_SA_LEN */
259
19fb538d
RZ
260 if (copylen > 0 && dest != NULL) {
261 if (checkaf && af_check(sa->sa_family) == 0)
262 return tlen;
75e710df
RZ
263 /*
264 * Handle sockaddr_dl corner case:
265 * RTA_NETMASK might be AF_LINK, but it doesn't anything
266 * relevant (e.g. zeroed out fields). Check for this
267 * case and avoid warning log message.
268 */
269 if (sa->sa_family == AF_LINK) {
270 sdl = (struct sockaddr_dl *)sa;
271 if (sdl->sdl_index == 0 || sdl->sdl_nlen == 0)
e0f741f4 272 copylen = destlen;
75e710df 273 }
19fb538d 274
86c57af5 275 if (copylen > destlen) {
fa0069c6
DS
276 zlog_warn(
277 "%s: destination buffer too small (%zu vs %zu)",
278 __func__, copylen, destlen);
86c57af5
RZ
279 memcpy(dest, sap, destlen);
280 } else
281 memcpy(dest, sap, copylen);
282 }
283
284 return tlen;
285}
286
19fb538d
RZ
287size_t rta_get(caddr_t sap, void *destp, size_t destlen)
288{
289 return _rta_get(sap, destp, destlen, true);
290}
291
292size_t rta_getattr(caddr_t sap, void *destp, size_t destlen)
293{
294 return _rta_get(sap, destp, destlen, false);
295}
296
86c57af5
RZ
297size_t rta_getsdlname(caddr_t sap, void *destp, short *destlen)
298{
299 struct sockaddr_dl *sdl = (struct sockaddr_dl *)sap;
86c57af5
RZ
300 uint8_t *dest = destp;
301 size_t tlen, copylen;
302
303 copylen = sdl->sdl_nlen;
304#ifdef HAVE_STRUCT_SOCKADDR_SA_LEN
8054cf97
QY
305 struct sockaddr *sa = (struct sockaddr *)sap;
306
86c57af5
RZ
307 tlen = (sa->sa_len == 0) ? sizeof(ROUNDUP_TYPE) : ROUNDUP(sa->sa_len);
308#else /* !HAVE_STRUCT_SOCKADDR_SA_LEN */
309 tlen = SAROUNDUP(sap);
310#endif /* !HAVE_STRUCT_SOCKADDR_SA_LEN */
311
312 if (copylen > 0 && dest != NULL && sdl->sdl_family == AF_LINK) {
313 if (copylen > IFNAMSIZ) {
fa0069c6
DS
314 zlog_warn(
315 "%s: destination buffer too small (%zu vs %d)",
316 __func__, copylen, IFNAMSIZ);
86c57af5
RZ
317 memcpy(dest, sdl->sdl_data, IFNAMSIZ);
318 dest[IFNAMSIZ] = 0;
319 *destlen = IFNAMSIZ;
320 } else {
321 memcpy(dest, sdl->sdl_data, copylen);
322 dest[copylen] = 0;
323 *destlen = copylen;
324 }
325 } else
326 *destlen = 0;
327
328 return tlen;
329}
330
5b62211d
RZ
331const char *rtatostr(unsigned int flags, char *buf, size_t buflen)
332{
333 const char *flagstr, *bufstart;
334 int bit, wlen;
335 char ustr[32];
336
337 /* Hold the pointer to the buffer beginning. */
338 bufstart = buf;
339
340 for (bit = 1; bit; bit <<= 1) {
341 if ((flags & bit) == 0)
342 continue;
343
344 switch (bit) {
345 case RTA_DST:
346 flagstr = "DST";
347 break;
348 case RTA_GATEWAY:
349 flagstr = "GATEWAY";
350 break;
351 case RTA_NETMASK:
352 flagstr = "NETMASK";
353 break;
354#ifdef RTA_GENMASK
355 case RTA_GENMASK:
356 flagstr = "GENMASK";
357 break;
358#endif /* RTA_GENMASK */
359 case RTA_IFP:
360 flagstr = "IFP";
361 break;
362 case RTA_IFA:
363 flagstr = "IFA";
364 break;
365#ifdef RTA_AUTHOR
366 case RTA_AUTHOR:
367 flagstr = "AUTHOR";
368 break;
369#endif /* RTA_AUTHOR */
370 case RTA_BRD:
371 flagstr = "BRD";
372 break;
373#ifdef RTA_SRC
374 case RTA_SRC:
375 flagstr = "SRC";
376 break;
377#endif /* RTA_SRC */
378#ifdef RTA_SRCMASK
379 case RTA_SRCMASK:
380 flagstr = "SRCMASK";
381 break;
382#endif /* RTA_SRCMASK */
383#ifdef RTA_LABEL
384 case RTA_LABEL:
385 flagstr = "LABEL";
386 break;
387#endif /* RTA_LABEL */
388
389 default:
390 snprintf(ustr, sizeof(ustr), "0x%x", bit);
391 flagstr = ustr;
392 break;
393 }
394
395 wlen = snprintf(buf, buflen, "%s,", flagstr);
396 buf += wlen;
397 buflen -= wlen;
398 }
399
400 /* Check for empty buffer. */
401 if (bufstart != buf)
402 buf--;
403
404 /* Remove the last comma. */
405 *buf = 0;
406
407 return bufstart;
408}
409
718e3744 410/* Dump routing table flag for debug purpose. */
d62a17ae 411static void rtm_flag_dump(int flag)
718e3744 412{
d62a17ae 413 const struct message *mes;
414 static char buf[BUFSIZ];
415
416 buf[0] = '\0';
417 for (mes = rtm_flag_str; mes->key != 0; mes++) {
418 if (mes->key & flag) {
419 strlcat(buf, mes->str, BUFSIZ);
420 strlcat(buf, " ", BUFSIZ);
421 }
718e3744 422 }
d62a17ae 423 zlog_debug("Kernel: %s", buf);
718e3744 424}
425
426#ifdef RTM_IFANNOUNCE
427/* Interface adding function */
d62a17ae 428static int ifan_read(struct if_announcemsghdr *ifan)
718e3744 429{
d62a17ae 430 struct interface *ifp;
431
432 ifp = if_lookup_by_index(ifan->ifan_index, VRF_DEFAULT);
433
434 if (ifp)
435 assert((ifp->ifindex == ifan->ifan_index)
436 || (ifp->ifindex == IFINDEX_INTERNAL));
437
9d303b37
DL
438 if ((ifp == NULL) || ((ifp->ifindex == IFINDEX_INTERNAL)
439 && (ifan->ifan_what == IFAN_ARRIVAL))) {
d62a17ae 440 if (IS_ZEBRA_DEBUG_KERNEL)
441 zlog_debug(
442 "%s: creating interface for ifindex %d, name %s",
443 __func__, ifan->ifan_index, ifan->ifan_name);
444
445 /* Create Interface */
f60a1188
IR
446 ifp = if_get_by_name(ifan->ifan_name, VRF_DEFAULT,
447 VRF_DEFAULT_NAME);
ff880b78 448 if_set_index(ifp, ifan->ifan_index);
d62a17ae 449
450 if_get_metric(ifp);
451 if_add_update(ifp);
452 } else if (ifp != NULL && ifan->ifan_what == IFAN_DEPARTURE)
453 if_delete_update(ifp);
454
455 if_get_flags(ifp);
456 if_get_mtu(ifp);
457 if_get_metric(ifp);
458
459 if (IS_ZEBRA_DEBUG_KERNEL)
460 zlog_debug("%s: interface %s index %d", __func__,
461 ifan->ifan_name, ifan->ifan_index);
462
463 return 0;
718e3744 464}
465#endif /* RTM_IFANNOUNCE */
466
9234b382 467#ifdef HAVE_BSD_IFI_LINK_STATE
c543a173 468/* BSD link detect translation */
d62a17ae 469static void bsd_linkdetect_translate(struct if_msghdr *ifm)
c543a173 470{
d62a17ae 471 if ((ifm->ifm_data.ifi_link_state >= LINK_STATE_UP)
472 || (ifm->ifm_data.ifi_link_state == LINK_STATE_UNKNOWN))
473 SET_FLAG(ifm->ifm_flags, IFF_RUNNING);
474 else
475 UNSET_FLAG(ifm->ifm_flags, IFF_RUNNING);
c543a173 476}
9234b382 477#endif /* HAVE_BSD_IFI_LINK_STATE */
c543a173 478
d62a17ae 479static enum zebra_link_type sdl_to_zebra_link_type(unsigned int sdlt)
8ccc7e80 480{
d62a17ae 481 switch (sdlt) {
482 case IFT_ETHER:
483 return ZEBRA_LLT_ETHER;
484 case IFT_X25:
485 return ZEBRA_LLT_X25;
486 case IFT_FDDI:
487 return ZEBRA_LLT_FDDI;
488 case IFT_PPP:
489 return ZEBRA_LLT_PPP;
490 case IFT_LOOP:
491 return ZEBRA_LLT_LOOPBACK;
492 case IFT_SLIP:
493 return ZEBRA_LLT_SLIP;
494 case IFT_ARCNET:
495 return ZEBRA_LLT_ARCNET;
496 case IFT_ATM:
497 return ZEBRA_LLT_ATM;
498 case IFT_LOCALTALK:
499 return ZEBRA_LLT_LOCALTLK;
500 case IFT_HIPPI:
501 return ZEBRA_LLT_HIPPI;
8ccc7e80 502#ifdef IFT_IEEE1394
d62a17ae 503 case IFT_IEEE1394:
504 return ZEBRA_LLT_IEEE1394;
8ccc7e80
TT
505#endif
506
d62a17ae 507 default:
508 return ZEBRA_LLT_UNKNOWN;
509 }
8ccc7e80
TT
510}
511
da26e3b6 512/*
513 * Handle struct if_msghdr obtained from reading routing socket or
514 * sysctl (from interface_list). There may or may not be sockaddrs
515 * present after the header.
516 */
d62a17ae 517int ifm_read(struct if_msghdr *ifm)
718e3744 518{
d62a17ae 519 struct interface *ifp = NULL;
ee74220b 520 struct sockaddr_dl *sdl = NULL;
d62a17ae 521 char ifname[IFNAMSIZ];
522 short ifnlen = 0;
86c57af5 523 int maskbit;
d62a17ae 524 caddr_t cp;
5b62211d 525 char fbuf[64];
d62a17ae 526
527 /* terminate ifname at head (for strnlen) and tail (for safety) */
528 ifname[IFNAMSIZ - 1] = '\0';
529
530 /* paranoia: sanity check structure */
531 if (ifm->ifm_msglen < sizeof(struct if_msghdr)) {
e914ccbe 532 flog_err(EC_ZEBRA_NETLINK_LENGTH_ERROR,
bcfce7ad 533 "ifm_read: ifm->ifm_msglen %d too short",
1c50c1c0 534 ifm->ifm_msglen);
d62a17ae 535 return -1;
536 }
537
538 /*
539 * Check for a sockaddr_dl following the message. First, point to
540 * where a socakddr might be if one follows the message.
541 */
542 cp = (void *)(ifm + 1);
718e3744 543
86c57af5
RZ
544 /* Look up for RTA_IFP and skip others. */
545 for (maskbit = 1; maskbit; maskbit <<= 1) {
546 if ((maskbit & ifm->ifm_addrs) == 0)
547 continue;
548 if (maskbit != RTA_IFP) {
549 cp += rta_get(cp, NULL, 0);
550 continue;
551 }
552
553 /* Save the pointer to the structure. */
554 sdl = (struct sockaddr_dl *)cp;
555 cp += rta_getsdlname(cp, ifname, &ifnlen);
556 }
d62a17ae 557
558 if (IS_ZEBRA_DEBUG_KERNEL)
5b62211d
RZ
559 zlog_debug("%s: sdl ifname %s addrs {%s}", __func__,
560 (ifnlen ? ifname : "(nil)"),
561 rtatostr(ifm->ifm_addrs, fbuf, sizeof(fbuf)));
d62a17ae 562
563 /*
564 * Look up on ifindex first, because ifindices are the primary handle
565 * for
566 * interfaces across the user/kernel boundary, for most systems. (Some
567 * messages, such as up/down status changes on NetBSD, do not include a
568 * sockaddr_dl).
569 */
570 if ((ifp = if_lookup_by_index(ifm->ifm_index, VRF_DEFAULT)) != NULL) {
571 /* we have an ifp, verify that the name matches as some systems,
572 * eg Solaris, have a 1:many association of ifindex:ifname
573 * if they dont match, we dont have the correct ifp and should
574 * set it back to NULL to let next check do lookup by name
575 */
576 if (ifnlen && (strncmp(ifp->name, ifname, IFNAMSIZ) != 0)) {
577 if (IS_ZEBRA_DEBUG_KERNEL)
578 zlog_debug(
0437e105 579 "%s: ifp name %s doesn't match sdl name %s",
d62a17ae 580 __func__, ifp->name, ifname);
581 ifp = NULL;
582 }
da26e3b6 583 }
5c78b3d0 584
d62a17ae 585 /*
586 * If we dont have an ifp, try looking up by name. Particularly as some
587 * systems (Solaris) have a 1:many mapping of ifindex:ifname - the
588 * ifname
589 * is therefore our unique handle to that interface.
590 *
591 * Interfaces specified in the configuration file for which the ifindex
592 * has not been determined will have ifindex == IFINDEX_INTERNAL, and
593 * such
594 * interfaces are found by this search, and then their ifindex values
595 * can
596 * be filled in.
597 */
598 if ((ifp == NULL) && ifnlen)
a36898e7 599 ifp = if_lookup_by_name(ifname, VRF_DEFAULT);
d62a17ae 600
601 /*
602 * If ifp still does not exist or has an invalid index
603 * (IFINDEX_INTERNAL),
604 * create or fill in an interface.
605 */
606 if ((ifp == NULL) || (ifp->ifindex == IFINDEX_INTERNAL)) {
607 /*
608 * To create or fill in an interface, a sockaddr_dl (via
609 * RTA_IFP) is required.
610 */
611 if (!ifnlen) {
9165c5f5 612 zlog_debug("Interface index %d (new) missing ifname",
9df414fe 613 ifm->ifm_index);
d62a17ae 614 return -1;
615 }
616
5c78b3d0 617#ifndef RTM_IFANNOUNCE
d62a17ae 618 /* Down->Down interface should be ignored here.
619 * See further comment below.
620 */
621 if (!CHECK_FLAG(ifm->ifm_flags, IFF_UP))
622 return 0;
5c78b3d0 623#endif /* !RTM_IFANNOUNCE */
d62a17ae 624
625 if (ifp == NULL) {
626 /* Interface that zebra was not previously aware of, so
627 * create. */
f60a1188
IR
628 ifp = if_get_by_name(ifname, VRF_DEFAULT,
629 VRF_DEFAULT_NAME);
d62a17ae 630 if (IS_ZEBRA_DEBUG_KERNEL)
631 zlog_debug("%s: creating ifp for ifindex %d",
632 __func__, ifm->ifm_index);
633 }
634
635 if (IS_ZEBRA_DEBUG_KERNEL)
636 zlog_debug(
637 "%s: updated/created ifp, ifname %s, ifindex %d",
638 __func__, ifp->name, ifp->ifindex);
639 /*
640 * Fill in newly created interface structure, or larval
641 * structure with ifindex IFINDEX_INTERNAL.
642 */
ff880b78 643 if_set_index(ifp, ifm->ifm_index);
d62a17ae 644
9234b382 645#ifdef HAVE_BSD_IFI_LINK_STATE /* translate BSD kernel msg for link-state */
d62a17ae 646 bsd_linkdetect_translate(ifm);
9234b382 647#endif /* HAVE_BSD_IFI_LINK_STATE */
c543a173 648
d62a17ae 649 if_flags_update(ifp, ifm->ifm_flags);
718e3744 650#if defined(__bsdi__)
d62a17ae 651 if_kvm_get_mtu(ifp);
718e3744 652#else
d62a17ae 653 if_get_mtu(ifp);
718e3744 654#endif /* __bsdi__ */
d62a17ae 655 if_get_metric(ifp);
656
657 /*
658 * XXX sockaddr_dl contents can be larger than the structure
659 * definition. There are 2 big families here:
660 * - BSD has sdl_len + sdl_data[16] + overruns sdl_data
661 * we MUST use sdl_len here or we'll truncate data.
662 * - Solaris has no sdl_len, but sdl_data[244]
663 * presumably, it's not going to run past that, so sizeof()
664 * is fine here.
86c57af5 665 * a nonzero ifnlen from rta_getsdlname() means sdl is valid
d62a17ae 666 */
667 ifp->ll_type = ZEBRA_LLT_UNKNOWN;
668 ifp->hw_addr_len = 0;
669 if (ifnlen) {
ca3ccd87 670#ifdef HAVE_STRUCT_SOCKADDR_DL_SDL_LEN
d62a17ae 671 memcpy(&((struct zebra_if *)ifp->info)->sdl, sdl,
672 sdl->sdl_len);
ca3ccd87 673#else
d62a17ae 674 memcpy(&((struct zebra_if *)ifp->info)->sdl, sdl,
675 sizeof(struct sockaddr_dl));
ca3ccd87 676#endif /* HAVE_STRUCT_SOCKADDR_DL_SDL_LEN */
8ccc7e80 677
d62a17ae 678 ifp->ll_type = sdl_to_zebra_link_type(sdl->sdl_type);
679 if (sdl->sdl_alen <= sizeof(ifp->hw_addr)) {
680 memcpy(ifp->hw_addr, LLADDR(sdl),
681 sdl->sdl_alen);
682 ifp->hw_addr_len = sdl->sdl_alen;
683 }
684 }
685
686 if_add_update(ifp);
687 } else
688 /*
689 * Interface structure exists. Adjust stored flags from
690 * notification. If interface has up->down or down->up
691 * transition, call state change routines (to adjust routes,
692 * notify routing daemons, etc.). (Other flag changes are stored
693 * but apparently do not trigger action.)
694 */
695 {
696 if (ifp->ifindex != ifm->ifm_index) {
9df414fe 697 zlog_debug(
3efd0893 698 "%s: index mismatch, ifname %s, ifp index %d, ifm index %d",
d62a17ae 699 __func__, ifp->name, ifp->ifindex,
700 ifm->ifm_index);
701 return -1;
702 }
703
9234b382 704#ifdef HAVE_BSD_IFI_LINK_STATE /* translate BSD kernel msg for link-state */
d62a17ae 705 bsd_linkdetect_translate(ifm);
9234b382 706#endif /* HAVE_BSD_IFI_LINK_STATE */
c543a173 707
d62a17ae 708 /* update flags and handle operative->inoperative transition, if
709 * any */
710 if_flags_update(ifp, ifm->ifm_flags);
711
6eb8827d 712#ifndef RTM_IFANNOUNCE
d62a17ae 713 if (!if_is_up(ifp)) {
714 /* No RTM_IFANNOUNCE on this platform, so we can never
715 * distinguish between ~IFF_UP and delete. We must
716 * presume
717 * it has been deleted.
718 * Eg, Solaris will not notify us of unplumb.
719 *
720 * XXX: Fixme - this should be runtime detected
721 * So that a binary compiled on a system with IFANNOUNCE
722 * will still behave correctly if run on a platform
723 * without
724 */
725 if_delete_update(ifp);
726 }
6eb8827d 727#endif /* RTM_IFANNOUNCE */
d62a17ae 728 if (if_is_up(ifp)) {
1ba27564 729#if defined(__bsdi__)
d62a17ae 730 if_kvm_get_mtu(ifp);
1ba27564 731#else
d62a17ae 732 if_get_mtu(ifp);
1ba27564 733#endif /* __bsdi__ */
d62a17ae 734 if_get_metric(ifp);
735 }
736 }
5c78b3d0 737
718e3744 738#ifdef HAVE_NET_RT_IFLIST
d62a17ae 739 ifp->stats = ifm->ifm_data;
718e3744 740#endif /* HAVE_NET_RT_IFLIST */
04427fcb 741 ifp->speed = ifm->ifm_data.ifi_baudrate / 1000000;
718e3744 742
d62a17ae 743 if (IS_ZEBRA_DEBUG_KERNEL)
744 zlog_debug("%s: interface %s index %d", __func__, ifp->name,
745 ifp->ifindex);
718e3744 746
d62a17ae 747 return 0;
718e3744 748}
6b0655a2 749
718e3744 750/* Address read from struct ifa_msghdr. */
d62a17ae 751static void ifam_read_mesg(struct ifa_msghdr *ifm, union sockunion *addr,
752 union sockunion *mask, union sockunion *brd,
753 char *ifname, short *ifnlen)
718e3744 754{
d62a17ae 755 caddr_t pnt, end;
756 union sockunion dst;
757 union sockunion gateway;
86c57af5 758 int maskbit;
5b62211d 759 char fbuf[64];
d62a17ae 760
761 pnt = (caddr_t)(ifm + 1);
762 end = ((caddr_t)ifm) + ifm->ifam_msglen;
763
764 /* Be sure structure is cleared */
765 memset(mask, 0, sizeof(union sockunion));
766 memset(addr, 0, sizeof(union sockunion));
767 memset(brd, 0, sizeof(union sockunion));
768 memset(&dst, 0, sizeof(union sockunion));
769 memset(&gateway, 0, sizeof(union sockunion));
770
771 /* We fetch each socket variable into sockunion. */
86c57af5
RZ
772 for (maskbit = 1; maskbit; maskbit <<= 1) {
773 if ((maskbit & ifm->ifam_addrs) == 0)
774 continue;
775
776 switch (maskbit) {
777 case RTA_DST:
778 pnt += rta_get(pnt, &dst, sizeof(dst));
779 break;
780 case RTA_GATEWAY:
781 pnt += rta_get(pnt, &gateway, sizeof(gateway));
782 break;
783 case RTA_NETMASK:
19fb538d 784 pnt += rta_getattr(pnt, mask, sizeof(*mask));
86c57af5
RZ
785 break;
786 case RTA_IFP:
787 pnt += rta_getsdlname(pnt, ifname, ifnlen);
788 break;
789 case RTA_IFA:
790 pnt += rta_get(pnt, addr, sizeof(*addr));
791 break;
792 case RTA_BRD:
793 pnt += rta_get(pnt, brd, sizeof(*brd));
794 break;
795
796 default:
797 pnt += rta_get(pnt, NULL, 0);
798 break;
799 }
800
801 if (pnt > end) {
802 zlog_warn("%s: overflow detected (pnt:%p end:%p)",
803 __func__, pnt, end);
804 break;
805 }
806 }
d62a17ae 807
808 if (IS_ZEBRA_DEBUG_KERNEL) {
7053cae4 809 switch (sockunion_family(addr)) {
d62a17ae 810 case AF_INET:
811 case AF_INET6: {
7053cae4
RZ
812 int masklen =
813 (sockunion_family(addr) == AF_INET)
814 ? ip_masklen(mask->sin.sin_addr)
815 : ip6_masklen(mask->sin6.sin6_addr);
d62a17ae 816 zlog_debug(
bcfce7ad 817 "%s: ifindex %d, ifname %s, ifam_addrs {%s}, ifam_flags 0x%x, addr %pSU/%d broad %pSU dst %pSU gateway %pSU",
d62a17ae 818 __func__, ifm->ifam_index,
5b62211d
RZ
819 (ifnlen ? ifname : "(nil)"),
820 rtatostr(ifm->ifam_addrs, fbuf, sizeof(fbuf)),
bcfce7ad
MS
821 ifm->ifam_flags, addr, masklen, brd, &dst,
822 &gateway);
d62a17ae 823 } break;
824 default:
5b62211d 825 zlog_debug("%s: ifindex %d, ifname %s, ifam_addrs {%s}",
d62a17ae 826 __func__, ifm->ifam_index,
827 (ifnlen ? ifname : "(nil)"),
5b62211d
RZ
828 rtatostr(ifm->ifam_addrs, fbuf,
829 sizeof(fbuf)));
d62a17ae 830 break;
831 }
832 }
833
834 /* Assert read up end point matches to end point */
86c57af5 835 pnt = (caddr_t)ROUNDUP((size_t)pnt);
2d100aa5 836 if (pnt != (caddr_t)ROUNDUP((size_t)end))
9df414fe 837 zlog_debug("ifam_read() doesn't read all socket data");
718e3744 838}
839
840/* Interface's address information get. */
d62a17ae 841int ifam_read(struct ifa_msghdr *ifam)
718e3744 842{
d62a17ae 843 struct interface *ifp = NULL;
844 union sockunion addr, mask, brd;
8c36640b 845 bool dest_same = false;
d62a17ae 846 char ifname[INTERFACE_NAMSIZ];
847 short ifnlen = 0;
ecff5258
DS
848 bool isalias = false;
849 uint32_t flags = 0;
d62a17ae 850
851 ifname[0] = ifname[INTERFACE_NAMSIZ - 1] = '\0';
852
853 /* Allocate and read address information. */
854 ifam_read_mesg(ifam, &addr, &mask, &brd, ifname, &ifnlen);
855
856 if ((ifp = if_lookup_by_index(ifam->ifam_index, VRF_DEFAULT)) == NULL) {
e914ccbe 857 flog_warn(EC_ZEBRA_UNKNOWN_INTERFACE,
9df414fe 858 "%s: no interface for ifname %s, index %d", __func__,
d62a17ae 859 ifname, ifam->ifam_index);
860 return -1;
861 }
862
863 if (ifnlen && strncmp(ifp->name, ifname, INTERFACE_NAMSIZ))
ecff5258
DS
864 isalias = true;
865
866 /*
867 * Mark the alias prefixes as secondary
868 */
869 if (isalias)
870 SET_FLAG(flags, ZEBRA_IFA_SECONDARY);
d62a17ae 871
872 /* N.B. The info in ifa_msghdr does not tell us whether the RTA_BRD
873 field contains a broadcast address or a peer address, so we are
874 forced to
875 rely upon the interface type. */
876 if (if_is_pointopoint(ifp))
877 SET_FLAG(flags, ZEBRA_IFA_PEER);
8c36640b
DS
878 else {
879 if (memcmp(&addr, &brd, sizeof(addr)) == 0)
880 dest_same = true;
881 }
7ab62c53 882
6502208c
PJ
883#if 0
884 /* it might seem cute to grab the interface metric here, however
885 * we're processing an address update message, and so some systems
886 * (e.g. FBSD) dont bother to fill in ifam_metric. Disabled, but left
887 * in deliberately, as comment.
888 */
d34b8991 889 ifp->metric = ifam->ifam_metric;
6502208c
PJ
890#endif
891
d62a17ae 892 /* Add connected address. */
893 switch (sockunion_family(&addr)) {
894 case AF_INET:
895 if (ifam->ifam_type == RTM_NEWADDR)
896 connected_add_ipv4(ifp, flags, &addr.sin.sin_addr,
897 ip_masklen(mask.sin.sin_addr),
8c36640b 898 dest_same ? NULL : &brd.sin.sin_addr,
cde1af84
AK
899 (isalias ? ifname : NULL),
900 METRIC_MAX);
d62a17ae 901 else
902 connected_delete_ipv4(ifp, flags, &addr.sin.sin_addr,
903 ip_masklen(mask.sin.sin_addr),
8c36640b
DS
904 dest_same ? NULL
905 : &brd.sin.sin_addr);
d62a17ae 906 break;
907 case AF_INET6:
908 /* Unset interface index from link-local address when IPv6 stack
909 is KAME. */
910 if (IN6_IS_ADDR_LINKLOCAL(&addr.sin6.sin6_addr)) {
911 SET_IN6_LINKLOCAL_IFINDEX(addr.sin6.sin6_addr, 0);
912 }
913
914 if (ifam->ifam_type == RTM_NEWADDR)
915 connected_add_ipv6(ifp, flags, &addr.sin6.sin6_addr,
60c0687a 916 NULL,
d62a17ae 917 ip6_masklen(mask.sin6.sin6_addr),
cde1af84
AK
918 (isalias ? ifname : NULL),
919 METRIC_MAX);
d62a17ae 920 else
60c0687a 921 connected_delete_ipv6(ifp, &addr.sin6.sin6_addr, NULL,
608105a7 922 ip6_masklen(mask.sin6.sin6_addr));
d62a17ae 923 break;
924 default:
925 /* Unsupported family silently ignore... */
926 break;
927 }
928
929 /* Check interface flag for implicit up of the interface. */
930 if_refresh(ifp);
5c78b3d0 931
d62a17ae 932 return 0;
718e3744 933}
6b0655a2 934
718e3744 935/* Interface function for reading kernel routing table information. */
d62a17ae 936static int rtm_read_mesg(struct rt_msghdr *rtm, union sockunion *dest,
937 union sockunion *mask, union sockunion *gate,
938 char *ifname, short *ifnlen)
718e3744 939{
d62a17ae 940 caddr_t pnt, end;
86c57af5 941 int maskbit;
d62a17ae 942
943 /* Pnt points out socket data start point. */
944 pnt = (caddr_t)(rtm + 1);
945 end = ((caddr_t)rtm) + rtm->rtm_msglen;
946
947 /* rt_msghdr version check. */
948 if (rtm->rtm_version != RTM_VERSION)
e914ccbe 949 flog_warn(EC_ZEBRA_RTM_VERSION_MISMATCH,
bcfce7ad 950 "Routing message version different %d should be %d.This may cause problem",
9df414fe 951 rtm->rtm_version, RTM_VERSION);
d62a17ae 952
953 /* Be sure structure is cleared */
954 memset(dest, 0, sizeof(union sockunion));
955 memset(gate, 0, sizeof(union sockunion));
956 memset(mask, 0, sizeof(union sockunion));
957
958 /* We fetch each socket variable into sockunion. */
86c57af5
RZ
959 /* We fetch each socket variable into sockunion. */
960 for (maskbit = 1; maskbit; maskbit <<= 1) {
961 if ((maskbit & rtm->rtm_addrs) == 0)
962 continue;
963
964 switch (maskbit) {
965 case RTA_DST:
966 pnt += rta_get(pnt, dest, sizeof(*dest));
967 break;
968 case RTA_GATEWAY:
969 pnt += rta_get(pnt, gate, sizeof(*gate));
970 break;
971 case RTA_NETMASK:
1583f8f5 972 pnt += rta_getattr(pnt, mask, sizeof(*mask));
86c57af5
RZ
973 break;
974 case RTA_IFP:
975 pnt += rta_getsdlname(pnt, ifname, ifnlen);
976 break;
977
978 default:
979 pnt += rta_get(pnt, NULL, 0);
980 break;
981 }
982
983 if (pnt > end) {
984 zlog_warn("%s: overflow detected (pnt:%p end:%p)",
985 __func__, pnt, end);
986 break;
987 }
988 }
d62a17ae 989
990 /* If there is netmask information set it's family same as
991 destination family*/
992 if (rtm->rtm_addrs & RTA_NETMASK)
993 mask->sa.sa_family = dest->sa.sa_family;
994
995 /* Assert read up to the end of pointer. */
996 if (pnt != end)
9df414fe 997 zlog_debug("rtm_read() doesn't read all socket data.");
d62a17ae 998
999 return rtm->rtm_flags;
718e3744 1000}
1001
d62a17ae 1002void rtm_read(struct rt_msghdr *rtm)
718e3744 1003{
d62a17ae 1004 int flags;
acde7f6b 1005 uint32_t zebra_flags;
d62a17ae 1006 union sockunion dest, mask, gate;
1007 char ifname[INTERFACE_NAMSIZ + 1];
1008 short ifnlen = 0;
fd36be7e 1009 struct nexthop nh;
026745a2
DS
1010 struct prefix p;
1011 ifindex_t ifindex = 0;
1012 afi_t afi;
5b62211d 1013 char fbuf[64];
d62a17ae 1014
1015 zebra_flags = 0;
1016
1017 /* Read destination and netmask and gateway from rtm message
1018 structure. */
1019 flags = rtm_read_mesg(rtm, &dest, &mask, &gate, ifname, &ifnlen);
1020 if (!(flags & RTF_DONE))
1021 return;
1022 if (IS_ZEBRA_DEBUG_KERNEL)
5b62211d 1023 zlog_debug("%s: got rtm of type %d (%s) addrs {%s}", __func__,
d62a17ae 1024 rtm->rtm_type,
5b62211d
RZ
1025 lookup_msg(rtm_type_str, rtm->rtm_type, NULL),
1026 rtatostr(rtm->rtm_addrs, fbuf, sizeof(fbuf)));
d62a17ae 1027
1028#ifdef RTF_CLONED /*bsdi, netbsd 1.6*/
1029 if (flags & RTF_CLONED)
1030 return;
718e3744 1031#endif
d62a17ae 1032#ifdef RTF_WASCLONED /*freebsd*/
1033 if (flags & RTF_WASCLONED)
1034 return;
718e3744 1035#endif
1036
d62a17ae 1037 if ((rtm->rtm_type == RTM_ADD || rtm->rtm_type == RTM_CHANGE)
1038 && !(flags & RTF_UP))
1039 return;
1040
1041 /* This is connected route. */
1042 if (!(flags & RTF_GATEWAY))
1043 return;
1044
1045 if (flags & RTF_PROTO1)
1046 SET_FLAG(zebra_flags, ZEBRA_FLAG_SELFROUTE);
1047
a8309422 1048 memset(&nh, 0, sizeof(nh));
4a7371e9
DS
1049
1050 nh.vrf_id = VRF_DEFAULT;
d62a17ae 1051 /* This is a reject or blackhole route */
a8309422
DL
1052 if (flags & RTF_REJECT) {
1053 nh.type = NEXTHOP_TYPE_BLACKHOLE;
1054 nh.bh_type = BLACKHOLE_REJECT;
1055 } else if (flags & RTF_BLACKHOLE) {
1056 nh.type = NEXTHOP_TYPE_BLACKHOLE;
1057 nh.bh_type = BLACKHOLE_NULL;
1058 }
d62a17ae 1059
c626d369
DS
1060 /*
1061 * Ignore our own messages.
1062 */
1063 if (rtm->rtm_type != RTM_GET && rtm->rtm_pid == pid)
1064 return;
d62a17ae 1065
d62a17ae 1066 if (dest.sa.sa_family == AF_INET) {
026745a2 1067 afi = AFI_IP;
d62a17ae 1068 p.family = AF_INET;
1069 p.u.prefix4 = dest.sin.sin_addr;
1070 if (flags & RTF_HOST)
936fbaef 1071 p.prefixlen = IPV4_MAX_BITLEN;
d62a17ae 1072 else
1073 p.prefixlen = ip_masklen(mask.sin.sin_addr);
1074
a8309422
DL
1075 if (!nh.type) {
1076 nh.type = NEXTHOP_TYPE_IPV4;
1077 nh.gate.ipv4 = gate.sin.sin_addr;
1078 }
026745a2
DS
1079 } else if (dest.sa.sa_family == AF_INET6) {
1080 afi = AFI_IP6;
d62a17ae 1081 p.family = AF_INET6;
1082 p.u.prefix6 = dest.sin6.sin6_addr;
1083 if (flags & RTF_HOST)
f4d81e55 1084 p.prefixlen = IPV6_MAX_BITLEN;
d62a17ae 1085 else
1086 p.prefixlen = ip6_masklen(mask.sin6.sin6_addr);
718e3744 1087
1088#ifdef KAME
d62a17ae 1089 if (IN6_IS_ADDR_LINKLOCAL(&gate.sin6.sin6_addr)) {
1090 ifindex = IN6_LINKLOCAL_IFINDEX(gate.sin6.sin6_addr);
1091 SET_IN6_LINKLOCAL_IFINDEX(gate.sin6.sin6_addr, 0);
1092 }
718e3744 1093#endif /* KAME */
1094
a8309422
DL
1095 if (!nh.type) {
1096 nh.type = ifindex ? NEXTHOP_TYPE_IPV6_IFINDEX
1097 : NEXTHOP_TYPE_IPV6;
1098 nh.gate.ipv6 = gate.sin6.sin6_addr;
1099 nh.ifindex = ifindex;
1100 }
026745a2
DS
1101 } else
1102 return;
d62a17ae 1103
026745a2
DS
1104 /*
1105 * CHANGE: delete the old prefix, we have no further information
1106 * to specify the route really
1107 */
1108 if (rtm->rtm_type == RTM_CHANGE)
1109 rib_delete(afi, SAFI_UNICAST, VRF_DEFAULT, ZEBRA_ROUTE_KERNEL,
bc541126 1110 0, zebra_flags, &p, NULL, NULL, 0, RT_TABLE_MAIN, 0,
3ceae22b 1111 0, true);
026745a2
DS
1112 if (rtm->rtm_type == RTM_GET || rtm->rtm_type == RTM_ADD
1113 || rtm->rtm_type == RTM_CHANGE)
1114 rib_add(afi, SAFI_UNICAST, VRF_DEFAULT, ZEBRA_ROUTE_KERNEL, 0,
8032b717 1115 zebra_flags, &p, NULL, &nh, 0, RT_TABLE_MAIN,
c6eee91f 1116 0, 0, 0, 0, false);
026745a2
DS
1117 else
1118 rib_delete(afi, SAFI_UNICAST, VRF_DEFAULT, ZEBRA_ROUTE_KERNEL,
bc541126 1119 0, zebra_flags, &p, NULL, &nh, 0, RT_TABLE_MAIN, 0,
3ceae22b 1120 0, true);
718e3744 1121}
1122
1123/* Interface function for the kernel routing table updates. Support
6621ca86 1124 * for RTM_CHANGE will be needed.
1125 * Exported only for rt_socket.c
1126 */
d62a17ae 1127int rtm_write(int message, union sockunion *dest, union sockunion *mask,
1128 union sockunion *gate, union sockunion *mpls, unsigned int index,
a8309422 1129 enum blackhole_type bh_type, int metric)
718e3744 1130{
d62a17ae 1131 int ret;
1132 caddr_t pnt;
1133 struct interface *ifp;
1134
1135 /* Sequencial number of routing message. */
1136 static int msg_seq = 0;
1137
1138 /* Struct of rt_msghdr and buffer for storing socket's data. */
1139 struct {
1140 struct rt_msghdr rtm;
1141 char buf[512];
1142 } msg;
1143
80776aec 1144 if (dplane_routing_sock < 0)
d62a17ae 1145 return ZEBRA_ERR_EPERM;
1146
1147 /* Clear and set rt_msghdr values */
1148 memset(&msg, 0, sizeof(struct rt_msghdr));
1149 msg.rtm.rtm_version = RTM_VERSION;
1150 msg.rtm.rtm_type = message;
1151 msg.rtm.rtm_seq = msg_seq++;
1152 msg.rtm.rtm_addrs = RTA_DST;
1153 msg.rtm.rtm_addrs |= RTA_GATEWAY;
1154 msg.rtm.rtm_flags = RTF_UP;
fe6c7157 1155#ifdef __OpenBSD__
d62a17ae 1156 msg.rtm.rtm_flags |= RTF_MPATH;
1157 msg.rtm.rtm_fmask = RTF_MPLS;
d3e2c74a 1158#endif
d62a17ae 1159 msg.rtm.rtm_index = index;
718e3744 1160
d62a17ae 1161 if (metric != 0) {
1162 msg.rtm.rtm_rmx.rmx_hopcount = metric;
1163 msg.rtm.rtm_inits |= RTV_HOPCOUNT;
1164 }
718e3744 1165
d62a17ae 1166 ifp = if_lookup_by_index(index, VRF_DEFAULT);
718e3744 1167
d62a17ae 1168 if (gate && (message == RTM_ADD || message == RTM_CHANGE))
1169 msg.rtm.rtm_flags |= RTF_GATEWAY;
718e3744 1170
d62a17ae 1171/* When RTF_CLONING is unavailable on BSD, should we set some
1172 * other flag instead?
1173 */
e6f148e6 1174#ifdef RTF_CLONING
d62a17ae 1175 if (!gate && (message == RTM_ADD || message == RTM_CHANGE) && ifp
1176 && (ifp->flags & IFF_POINTOPOINT) == 0)
1177 msg.rtm.rtm_flags |= RTF_CLONING;
e6f148e6 1178#endif /* RTF_CLONING */
718e3744 1179
d62a17ae 1180 /* If no protocol specific gateway is specified, use link
1181 address for gateway. */
1182 if (!gate) {
1183 if (!ifp) {
1184 char dest_buf[INET_ADDRSTRLEN] = "NULL",
1185 mask_buf[INET_ADDRSTRLEN] = "255.255.255.255";
1186 if (dest)
1187 inet_ntop(AF_INET, &dest->sin.sin_addr,
1188 dest_buf, INET_ADDRSTRLEN);
1189 if (mask)
1190 inet_ntop(AF_INET, &mask->sin.sin_addr,
1191 mask_buf, INET_ADDRSTRLEN);
9df414fe 1192 flog_warn(
e914ccbe 1193 EC_ZEBRA_RTM_NO_GATEWAY,
d62a17ae 1194 "%s: %s/%s: gate == NULL and no gateway found for ifindex %d",
1195 __func__, dest_buf, mask_buf, index);
1196 return -1;
1197 }
1198 gate = (union sockunion *)&((struct zebra_if *)ifp->info)->sdl;
1199 }
1200
1201 if (mask)
1202 msg.rtm.rtm_addrs |= RTA_NETMASK;
1203 else if (message == RTM_ADD || message == RTM_CHANGE)
1204 msg.rtm.rtm_flags |= RTF_HOST;
718e3744 1205
fe6c7157 1206#ifdef __OpenBSD__
d62a17ae 1207 if (mpls) {
1208 msg.rtm.rtm_addrs |= RTA_SRC;
1209 msg.rtm.rtm_flags |= RTF_MPLS;
1210
1211 if (mpls->smpls.smpls_label
70e98a7f 1212 != htonl(MPLS_LABEL_IMPLICIT_NULL << MPLS_LABEL_OFFSET))
d62a17ae 1213 msg.rtm.rtm_mpls = MPLS_OP_PUSH;
1214 }
d3e2c74a
RW
1215#endif
1216
d62a17ae 1217 /* Tagging route with flags */
1218 msg.rtm.rtm_flags |= (RTF_PROTO1);
718e3744 1219
a8309422
DL
1220 switch (bh_type) {
1221 case BLACKHOLE_UNSPEC:
1222 break;
1223 case BLACKHOLE_REJECT:
d62a17ae 1224 msg.rtm.rtm_flags |= RTF_REJECT;
a8309422
DL
1225 break;
1226 default:
1227 msg.rtm.rtm_flags |= RTF_BLACKHOLE;
1228 break;
1229 }
81dfcaa2 1230
718e3744 1231
d62a17ae 1232#define SOCKADDRSET(X, R) \
1233 if (msg.rtm.rtm_addrs & (R)) { \
1234 int len = SAROUNDUP(X); \
1235 memcpy(pnt, (caddr_t)(X), len); \
1236 pnt += len; \
1237 }
718e3744 1238
d62a17ae 1239 pnt = (caddr_t)msg.buf;
718e3744 1240
d62a17ae 1241 /* Write each socket data into rtm message buffer */
1242 SOCKADDRSET(dest, RTA_DST);
1243 SOCKADDRSET(gate, RTA_GATEWAY);
1244 SOCKADDRSET(mask, RTA_NETMASK);
fe6c7157 1245#ifdef __OpenBSD__
d62a17ae 1246 SOCKADDRSET(mpls, RTA_SRC);
d3e2c74a 1247#endif
718e3744 1248
d62a17ae 1249 msg.rtm.rtm_msglen = pnt - (caddr_t)&msg;
1250
80776aec 1251 ret = write(dplane_routing_sock, &msg, msg.rtm.rtm_msglen);
d62a17ae 1252
1253 if (ret != msg.rtm.rtm_msglen) {
1254 if (errno == EEXIST)
1255 return ZEBRA_ERR_RTEXIST;
1256 if (errno == ENETUNREACH)
1257 return ZEBRA_ERR_RTUNREACH;
1258 if (errno == ESRCH)
1259 return ZEBRA_ERR_RTNOEXIST;
1260
450971aa 1261 flog_err_sys(EC_LIB_SOCKET, "%s: write : %s (%d)", __func__,
9df414fe 1262 safe_strerror(errno), errno);
d62a17ae 1263 return ZEBRA_ERR_KERNEL;
1264 }
1265 return ZEBRA_ERR_NOERROR;
718e3744 1266}
1267
6b0655a2 1268
718e3744 1269#include "thread.h"
1270#include "zebra/zserv.h"
1271
718e3744 1272/* For debug purpose. */
d62a17ae 1273static void rtmsg_debug(struct rt_msghdr *rtm)
718e3744 1274{
5b62211d
RZ
1275 char fbuf[64];
1276
d62a17ae 1277 zlog_debug("Kernel: Len: %d Type: %s", rtm->rtm_msglen,
1278 lookup_msg(rtm_type_str, rtm->rtm_type, NULL));
1279 rtm_flag_dump(rtm->rtm_flags);
1280 zlog_debug("Kernel: message seq %d", rtm->rtm_seq);
5b62211d
RZ
1281 zlog_debug("Kernel: pid %lld, rtm_addrs {%s}", (long long)rtm->rtm_pid,
1282 rtatostr(rtm->rtm_addrs, fbuf, sizeof(fbuf)));
718e3744 1283}
1284
1285/* This is pretty gross, better suggestions welcome -- mhandler */
1286#ifndef RTAX_MAX
1287#ifdef RTA_NUMBITS
1288#define RTAX_MAX RTA_NUMBITS
1289#else
1290#define RTAX_MAX 8
1291#endif /* RTA_NUMBITS */
1292#endif /* RTAX_MAX */
1293
1294/* Kernel routing table and interface updates via routing socket. */
cc9f21da 1295static void kernel_read(struct thread *thread)
718e3744 1296{
d62a17ae 1297 int sock;
1298 int nbytes;
1299 struct rt_msghdr *rtm;
1300
1301 /*
1302 * This must be big enough for any message the kernel might send.
1303 * Rather than determining how many sockaddrs of what size might be
1304 * in each particular message, just use RTAX_MAX of sockaddr_storage
1305 * for each. Note that the sockaddrs must be after each message
1306 * definition, or rather after whichever happens to be the largest,
1307 * since the buffer needs to be big enough for a message and the
1308 * sockaddrs together.
1309 */
1310 union {
1311 /* Routing information. */
1312 struct {
1313 struct rt_msghdr rtm;
1314 struct sockaddr_storage addr[RTAX_MAX];
1315 } r;
1316
1317 /* Interface information. */
1318 struct {
1319 struct if_msghdr ifm;
1320 struct sockaddr_storage addr[RTAX_MAX];
1321 } im;
1322
1323 /* Interface address information. */
1324 struct {
1325 struct ifa_msghdr ifa;
1326 struct sockaddr_storage addr[RTAX_MAX];
1327 } ia;
718e3744 1328
1329#ifdef RTM_IFANNOUNCE
d62a17ae 1330 /* Interface arrival/departure */
1331 struct {
1332 struct if_announcemsghdr ifan;
1333 struct sockaddr_storage addr[RTAX_MAX];
1334 } ian;
718e3744 1335#endif /* RTM_IFANNOUNCE */
1336
d62a17ae 1337 } buf;
718e3744 1338
d62a17ae 1339 /* Fetch routing socket. */
1340 sock = THREAD_FD(thread);
718e3744 1341
0d6f7fd6 1342 nbytes = read(sock, &buf, sizeof(buf));
718e3744 1343
68cd699d
RM
1344 if (nbytes < 0) {
1345 if (errno == ENOBUFS) {
1346 flog_err(EC_ZEBRA_RECVMSG_OVERRUN,
1347 "routing socket overrun: %s",
1348 safe_strerror(errno));
1349 /*
1350 * In this case we are screwed.
1351 * There is no good way to
1352 * recover zebra at this point.
1353 */
1354 exit(-1);
1355 }
1356 if (errno != EAGAIN && errno != EWOULDBLOCK)
450971aa 1357 flog_err_sys(EC_LIB_SOCKET, "routing socket error: %s",
9df414fe 1358 safe_strerror(errno));
cc9f21da 1359 return;
d62a17ae 1360 }
718e3744 1361
68cd699d 1362 if (nbytes == 0)
cc9f21da 1363 return;
68cd699d 1364
3801e764 1365 thread_add_read(zrouter.master, kernel_read, NULL, sock, NULL);
718e3744 1366
d62a17ae 1367 if (IS_ZEBRA_DEBUG_KERNEL)
1368 rtmsg_debug(&buf.r.rtm);
718e3744 1369
d62a17ae 1370 rtm = &buf.r.rtm;
718e3744 1371
d62a17ae 1372 /*
1373 * Ensure that we didn't drop any data, so that processing routines
1374 * can assume they have the whole message.
1375 */
1376 if (rtm->rtm_msglen != nbytes) {
9df414fe 1377 zlog_debug(
63efca0e 1378 "kernel_read: rtm->rtm_msglen %d, nbytes %d, type %d",
d62a17ae 1379 rtm->rtm_msglen, nbytes, rtm->rtm_type);
cc9f21da 1380 return;
d62a17ae 1381 }
1382
1383 switch (rtm->rtm_type) {
1384 case RTM_ADD:
1385 case RTM_DELETE:
1386 case RTM_CHANGE:
1387 rtm_read(rtm);
1388 break;
1389 case RTM_IFINFO:
1390 ifm_read(&buf.im.ifm);
1391 break;
1392 case RTM_NEWADDR:
1393 case RTM_DELADDR:
1394 ifam_read(&buf.ia.ifa);
1395 break;
718e3744 1396#ifdef RTM_IFANNOUNCE
d62a17ae 1397 case RTM_IFANNOUNCE:
1398 ifan_read(&buf.ian.ifan);
1399 break;
718e3744 1400#endif /* RTM_IFANNOUNCE */
d62a17ae 1401 default:
1402 if (IS_ZEBRA_DEBUG_KERNEL)
1403 zlog_debug("Unprocessed RTM_type: %d", rtm->rtm_type);
1404 break;
1405 }
718e3744 1406}
1407
1408/* Make routing socket. */
d62a17ae 1409static void routing_socket(struct zebra_ns *zns)
718e3744 1410{
0cf6db21 1411 frr_with_privs(&zserv_privs) {
6bb30c2c 1412 routing_sock = ns_socket(AF_ROUTE, SOCK_RAW, 0, zns->ns_id);
80776aec
MS
1413
1414 dplane_routing_sock =
1415 ns_socket(AF_ROUTE, SOCK_RAW, 0, zns->ns_id);
6bb30c2c 1416 }
d62a17ae 1417
1418 if (routing_sock < 0) {
1c50c1c0 1419 flog_err_sys(EC_LIB_SOCKET, "Can't init kernel routing socket");
d62a17ae 1420 return;
1421 }
1422
80776aec
MS
1423 if (dplane_routing_sock < 0) {
1424 flog_err_sys(EC_LIB_SOCKET,
1425 "Can't init kernel dataplane routing socket");
1426 return;
1427 }
1428
68cd699d
RM
1429#ifdef SO_RERROR
1430 /* Allow reporting of route(4) buffer overflow errors */
1431 int n = 1;
355c74b7 1432
68cd699d
RM
1433 if (setsockopt(routing_sock, SOL_SOCKET, SO_RERROR, &n, sizeof(n)) < 0)
1434 flog_err_sys(EC_LIB_SOCKET,
1435 "Can't set SO_RERROR on routing socket");
1436#endif
1437
d62a17ae 1438 /* XXX: Socket should be NONBLOCK, however as we currently
1439 * discard failed writes, this will lead to inconsistencies.
1440 * For now, socket must be blocking.
1441 */
1442 /*if (fcntl (routing_sock, F_SETFL, O_NONBLOCK) < 0)
1443 zlog_warn ("Can't set O_NONBLOCK to routing socket");*/
1444
d62a17ae 1445 /* kernel_read needs rewrite. */
3801e764 1446 thread_add_read(zrouter.master, kernel_read, NULL, routing_sock, NULL);
718e3744 1447}
1448
1449/* Exported interface function. This function simply calls
1450 routing_socket (). */
d62a17ae 1451void kernel_init(struct zebra_ns *zns)
8f7d9fc0 1452{
d62a17ae 1453 routing_socket(zns);
8f7d9fc0
FL
1454}
1455
62b8bb7a 1456void kernel_terminate(struct zebra_ns *zns, bool complete)
718e3744 1457{
d62a17ae 1458 return;
718e3744 1459}
ddfeb486 1460
34869809
MS
1461/*
1462 * Global init for platform-/OS-specific things
1463 */
1464void kernel_router_init(void)
1465{
1466}
1467
1468/*
1469 * Global deinit for platform-/OS-specific things
1470 */
1471void kernel_router_terminate(void)
1472{
1473}
1474
d166308b
MS
1475/*
1476 * Called by the dplane pthread to read incoming OS messages and dispatch them.
1477 */
1478int kernel_dplane_read(struct zebra_dplane_info *info)
1479{
1480 return 0;
1481}
1482
fef24b03
JU
1483void kernel_update_multi(struct dplane_ctx_q *ctx_list)
1484{
18f60fe9
JU
1485 struct zebra_dplane_ctx *ctx;
1486 struct dplane_ctx_q handled_list;
1487 enum zebra_dplane_result res;
fef24b03 1488
18f60fe9
JU
1489 TAILQ_INIT(&handled_list);
1490
1491 while (true) {
1492 ctx = dplane_ctx_dequeue(ctx_list);
1493 if (ctx == NULL)
1494 break;
1495
1496 /*
1497 * A previous provider plugin may have asked to skip the
1498 * kernel update.
1499 */
1500 if (dplane_ctx_is_skip_kernel(ctx)) {
1501 res = ZEBRA_DPLANE_REQUEST_SUCCESS;
1502 goto skip_one;
1503 }
1504
1505 switch (dplane_ctx_get_op(ctx)) {
1506
1507 case DPLANE_OP_ROUTE_INSTALL:
1508 case DPLANE_OP_ROUTE_UPDATE:
1509 case DPLANE_OP_ROUTE_DELETE:
1510 res = kernel_route_update(ctx);
1511 break;
1512
1513 case DPLANE_OP_NH_INSTALL:
1514 case DPLANE_OP_NH_UPDATE:
1515 case DPLANE_OP_NH_DELETE:
1516 res = kernel_nexthop_update(ctx);
1517 break;
1518
1519 case DPLANE_OP_LSP_INSTALL:
1520 case DPLANE_OP_LSP_UPDATE:
1521 case DPLANE_OP_LSP_DELETE:
1522 res = kernel_lsp_update(ctx);
1523 break;
1524
1525 case DPLANE_OP_PW_INSTALL:
1526 case DPLANE_OP_PW_UNINSTALL:
1527 res = kernel_pw_update(ctx);
1528 break;
1529
1530 case DPLANE_OP_ADDR_INSTALL:
1531 case DPLANE_OP_ADDR_UNINSTALL:
1532 res = kernel_address_update_ctx(ctx);
1533 break;
1534
1535 case DPLANE_OP_MAC_INSTALL:
1536 case DPLANE_OP_MAC_DELETE:
1537 res = kernel_mac_update_ctx(ctx);
1538 break;
1539
1540 case DPLANE_OP_NEIGH_INSTALL:
1541 case DPLANE_OP_NEIGH_UPDATE:
1542 case DPLANE_OP_NEIGH_DELETE:
1543 case DPLANE_OP_VTEP_ADD:
1544 case DPLANE_OP_VTEP_DELETE:
d68e74b4 1545 case DPLANE_OP_NEIGH_DISCOVER:
18f60fe9
JU
1546 res = kernel_neigh_update_ctx(ctx);
1547 break;
1548
1549 case DPLANE_OP_RULE_ADD:
1550 case DPLANE_OP_RULE_DELETE:
1551 case DPLANE_OP_RULE_UPDATE:
1552 res = kernel_pbr_rule_update(ctx);
1553 break;
1554
1555 /* Ignore 'notifications' - no-op */
1556 case DPLANE_OP_SYS_ROUTE_ADD:
1557 case DPLANE_OP_SYS_ROUTE_DELETE:
1558 case DPLANE_OP_ROUTE_NOTIFY:
1559 case DPLANE_OP_LSP_NOTIFY:
1560 res = ZEBRA_DPLANE_REQUEST_SUCCESS;
1561 break;
1562
1563 default:
1564 res = ZEBRA_DPLANE_REQUEST_FAILURE;
1565 break;
1566 }
1567
1568 skip_one:
1569 dplane_ctx_set_status(ctx, res);
1570
1571 dplane_ctx_enqueue_tail(&handled_list, ctx);
1572 }
1573
1574 TAILQ_INIT(ctx_list);
1575 dplane_ctx_list_append(ctx_list, &handled_list);
fef24b03
JU
1576}
1577
ddfeb486 1578#endif /* !HAVE_NETLINK */