2 * Copyright (c) 1995, 1996
3 * The Regents of the University of California. All rights reserved.
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that: (1) source code distributions
7 * retain the above copyright notice and this paragraph in its entirety, (2)
8 * distributions including binary code include the above copyright notice and
9 * this paragraph in its entirety in the documentation or other materials
10 * provided with the distribution, and (3) all advertising materials mentioning
11 * features or use of this software display the following acknowledgement:
12 * ``This product includes software developed by the University of California,
13 * Lawrence Berkeley Laboratory and its contributors.'' Neither the name of
14 * the University nor the names of its contributors may be used to endorse
15 * or promote products derived from this software without specific prior
17 * THIS SOFTWARE IS PROVIDED ``AS IS'' AND WITHOUT ANY EXPRESS OR IMPLIED
18 * WARRANTIES, INCLUDING, WITHOUT LIMITATION, THE IMPLIED WARRANTIES OF
19 * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE.
22 /* \summary: Protocol Independent Multicast (PIM) printer */
28 #include "netdissect-stdinc.h"
30 #include "netdissect.h"
31 #include "addrtoname.h"
38 #define PIMV1_TYPE_QUERY 0
39 #define PIMV1_TYPE_REGISTER 1
40 #define PIMV1_TYPE_REGISTER_STOP 2
41 #define PIMV1_TYPE_JOIN_PRUNE 3
42 #define PIMV1_TYPE_RP_REACHABILITY 4
43 #define PIMV1_TYPE_ASSERT 5
44 #define PIMV1_TYPE_GRAFT 6
45 #define PIMV1_TYPE_GRAFT_ACK 7
47 static const struct tok pimv1_type_str
[] = {
48 { PIMV1_TYPE_QUERY
, "Query" },
49 { PIMV1_TYPE_REGISTER
, "Register" },
50 { PIMV1_TYPE_REGISTER_STOP
, "Register-Stop" },
51 { PIMV1_TYPE_JOIN_PRUNE
, "Join/Prune" },
52 { PIMV1_TYPE_RP_REACHABILITY
, "RP-reachable" },
53 { PIMV1_TYPE_ASSERT
, "Assert" },
54 { PIMV1_TYPE_GRAFT
, "Graft" },
55 { PIMV1_TYPE_GRAFT_ACK
, "Graft-ACK" },
59 #define PIMV2_TYPE_HELLO 0
60 #define PIMV2_TYPE_REGISTER 1
61 #define PIMV2_TYPE_REGISTER_STOP 2
62 #define PIMV2_TYPE_JOIN_PRUNE 3
63 #define PIMV2_TYPE_BOOTSTRAP 4
64 #define PIMV2_TYPE_ASSERT 5
65 #define PIMV2_TYPE_GRAFT 6
66 #define PIMV2_TYPE_GRAFT_ACK 7
67 #define PIMV2_TYPE_CANDIDATE_RP 8
68 #define PIMV2_TYPE_PRUNE_REFRESH 9
69 #define PIMV2_TYPE_DF_ELECTION 10
70 #define PIMV2_TYPE_ECMP_REDIRECT 11
72 static const struct tok pimv2_type_values
[] = {
73 { PIMV2_TYPE_HELLO
, "Hello" },
74 { PIMV2_TYPE_REGISTER
, "Register" },
75 { PIMV2_TYPE_REGISTER_STOP
, "Register Stop" },
76 { PIMV2_TYPE_JOIN_PRUNE
, "Join / Prune" },
77 { PIMV2_TYPE_BOOTSTRAP
, "Bootstrap" },
78 { PIMV2_TYPE_ASSERT
, "Assert" },
79 { PIMV2_TYPE_GRAFT
, "Graft" },
80 { PIMV2_TYPE_GRAFT_ACK
, "Graft Acknowledgement" },
81 { PIMV2_TYPE_CANDIDATE_RP
, "Candidate RP Advertisement" },
82 { PIMV2_TYPE_PRUNE_REFRESH
, "Prune Refresh" },
83 { PIMV2_TYPE_DF_ELECTION
, "DF Election" },
84 { PIMV2_TYPE_ECMP_REDIRECT
, "ECMP Redirect" },
88 #define PIMV2_HELLO_OPTION_HOLDTIME 1
89 #define PIMV2_HELLO_OPTION_LANPRUNEDELAY 2
90 #define PIMV2_HELLO_OPTION_DR_PRIORITY_OLD 18
91 #define PIMV2_HELLO_OPTION_DR_PRIORITY 19
92 #define PIMV2_HELLO_OPTION_GENID 20
93 #define PIMV2_HELLO_OPTION_REFRESH_CAP 21
94 #define PIMV2_HELLO_OPTION_BIDIR_CAP 22
95 #define PIMV2_HELLO_OPTION_ADDRESS_LIST 24
96 #define PIMV2_HELLO_OPTION_ADDRESS_LIST_OLD 65001
98 static const struct tok pimv2_hello_option_values
[] = {
99 { PIMV2_HELLO_OPTION_HOLDTIME
, "Hold Time" },
100 { PIMV2_HELLO_OPTION_LANPRUNEDELAY
, "LAN Prune Delay" },
101 { PIMV2_HELLO_OPTION_DR_PRIORITY_OLD
, "DR Priority (Old)" },
102 { PIMV2_HELLO_OPTION_DR_PRIORITY
, "DR Priority" },
103 { PIMV2_HELLO_OPTION_GENID
, "Generation ID" },
104 { PIMV2_HELLO_OPTION_REFRESH_CAP
, "State Refresh Capability" },
105 { PIMV2_HELLO_OPTION_BIDIR_CAP
, "Bi-Directional Capability" },
106 { PIMV2_HELLO_OPTION_ADDRESS_LIST
, "Address List" },
107 { PIMV2_HELLO_OPTION_ADDRESS_LIST_OLD
, "Address List (Old)" },
111 #define PIMV2_REGISTER_FLAG_LEN 4
112 #define PIMV2_REGISTER_FLAG_BORDER 0x80000000
113 #define PIMV2_REGISTER_FLAG_NULL 0x40000000
115 static const struct tok pimv2_register_flag_values
[] = {
116 { PIMV2_REGISTER_FLAG_BORDER
, "Border" },
117 { PIMV2_REGISTER_FLAG_NULL
, "Null" },
121 #define PIMV2_DF_ELECTION_OFFER 1
122 #define PIMV2_DF_ELECTION_WINNER 2
123 #define PIMV2_DF_ELECTION_BACKOFF 3
124 #define PIMV2_DF_ELECTION_PASS 4
126 static struct tok pimv2_df_election_flag_values
[] = {
127 { PIMV2_DF_ELECTION_OFFER
, "Offer" },
128 { PIMV2_DF_ELECTION_WINNER
, "Winner" },
129 { PIMV2_DF_ELECTION_BACKOFF
, "Backoff" },
130 { PIMV2_DF_ELECTION_PASS
, "Pass" },
134 #define PIMV2_DF_ELECTION_PASS_BACKOFF_STR(x) ( \
135 x == PIMV2_DF_ELECTION_BACKOFF ? "offer" : "new winner" )
139 * XXX: We consider a case where IPv6 is not ready yet for portability,
140 * but PIM dependent defintions should be independent of IPv6...
144 nd_uint8_t pim_typever
;
145 /* upper 4bit: PIM version number; 2 for PIMv2 */
146 /* lower 4bit: the PIM message type, currently they are:
147 * Hello, Register, Register-Stop, Join/Prune,
148 * Bootstrap, Assert, Graft (PIM-DM only),
149 * Graft-Ack (PIM-DM only), C-RP-Adv
151 #define PIM_VER(x) (((x) & 0xf0) >> 4)
152 #define PIM_TYPE(x) ((x) & 0x0f)
153 nd_uint8_t pim_rsv
; /* Reserved in v1, subtype+address length in v2 */
154 #define PIM_SUBTYPE(x) (((x) & 0xf0) >> 4)
155 nd_uint16_t pim_cksum
; /* IP style check sum */
158 static void pimv2_print(netdissect_options
*, const u_char
*bp
, u_int len
, const u_char
*);
161 pimv1_join_prune_print(netdissect_options
*ndo
,
162 const u_char
*bp
, u_int len
)
164 u_int ngroups
, njoin
, nprune
;
167 /* If it's a single group and a single source, use 1-line output. */
168 if (ND_TTEST_LEN(bp
, 30) && GET_U_1(bp
+ 11) == 1 &&
169 ((njoin
= GET_BE_U_2(bp
+ 20)) + GET_BE_U_2(bp
+ 22)) == 1) {
172 ND_PRINT(" RPF %s ", ipaddr_string(ndo
, bp
));
173 hold
= GET_BE_U_2(bp
+ 6);
176 unsigned_relts_print(ndo
, hold
);
178 ND_PRINT("%s (%s/%u, %s", njoin
? "Join" : "Prune",
179 ipaddr_string(ndo
, bp
+ 26), GET_U_1(bp
+ 25) & 0x3f,
180 ipaddr_string(ndo
, bp
+ 12));
181 if (GET_BE_U_4(bp
+ 16) != 0xffffffff)
182 ND_PRINT("/%s", ipaddr_string(ndo
, bp
+ 16));
183 ND_PRINT(") %s%s %s",
184 (GET_U_1(bp
+ 24) & 0x01) ? "Sparse" : "Dense",
185 (GET_U_1(bp
+ 25) & 0x80) ? " WC" : "",
186 (GET_U_1(bp
+ 25) & 0x40) ? "RP" : "SPT");
190 if (len
< sizeof(nd_ipv4
))
192 ND_TCHECK_LEN(bp
, sizeof(nd_ipv4
));
193 if (ndo
->ndo_vflag
> 1)
195 ND_PRINT(" Upstream Nbr: %s", ipaddr_string(ndo
, bp
));
201 if (ndo
->ndo_vflag
> 1)
203 ND_PRINT(" Hold time: ");
204 unsigned_relts_print(ndo
, GET_BE_U_2(bp
+ 2));
205 if (ndo
->ndo_vflag
< 2)
213 ngroups
= GET_U_1(bp
+ 3);
216 while (ngroups
!= 0) {
218 * XXX - does the address have length "addrlen" and the
219 * mask length "maddrlen"?
223 ND_TCHECK_LEN(bp
, sizeof(nd_ipv4
));
224 ND_PRINT("\n\tGroup: %s", ipaddr_string(ndo
, bp
));
229 ND_TCHECK_LEN(bp
, sizeof(nd_ipv4
));
230 if (GET_BE_U_4(bp
) != 0xffffffff)
231 ND_PRINT("/%s", ipaddr_string(ndo
, bp
));
237 njoin
= GET_BE_U_2(bp
);
238 nprune
= GET_BE_U_2(bp
+ 2);
239 ND_PRINT(" joined: %u pruned: %u", njoin
, nprune
);
242 for (njp
= 0; njp
< (njoin
+ nprune
); njp
++) {
252 ND_PRINT("\n\t%s %s%s%s%s/%u", type
,
253 (GET_U_1(bp
) & 0x01) ? "Sparse " : "Dense ",
254 (GET_U_1(bp
+ 1) & 0x80) ? "WC " : "",
255 (GET_U_1(bp
+ 1) & 0x40) ? "RP " : "SPT ",
256 ipaddr_string(ndo
, bp
+ 2),
257 GET_U_1(bp
+ 1) & 0x3f);
270 pimv1_print(netdissect_options
*ndo
,
271 const u_char
*bp
, u_int len
)
275 ndo
->ndo_protocol
= "pimv1";
277 type
= GET_U_1(bp
+ 1);
279 ND_PRINT(" %s", tok2str(pimv1_type_str
, "[type %u]", type
));
281 case PIMV1_TYPE_QUERY
:
282 if (ND_TTEST_1(bp
+ 8)) {
283 switch (GET_U_1(bp
+ 8) >> 4) {
285 ND_PRINT(" Dense-mode");
288 ND_PRINT(" Sparse-mode");
291 ND_PRINT(" Sparse-Dense-mode");
294 ND_PRINT(" mode-%u", GET_U_1(bp
+ 8) >> 4);
298 if (ndo
->ndo_vflag
) {
299 ND_TCHECK_2(bp
+ 10);
300 ND_PRINT(" (Hold-time ");
301 unsigned_relts_print(ndo
, GET_BE_U_2(bp
+ 10));
306 case PIMV1_TYPE_REGISTER
:
307 ND_TCHECK_LEN(bp
+ 8, 20); /* ip header */
308 ND_PRINT(" for %s > %s", ipaddr_string(ndo
, bp
+ 20),
309 ipaddr_string(ndo
, bp
+ 24));
311 case PIMV1_TYPE_REGISTER_STOP
:
312 ND_TCHECK_LEN(bp
+ 12, sizeof(nd_ipv4
));
313 ND_PRINT(" for %s > %s", ipaddr_string(ndo
, bp
+ 8),
314 ipaddr_string(ndo
, bp
+ 12));
316 case PIMV1_TYPE_RP_REACHABILITY
:
317 if (ndo
->ndo_vflag
) {
318 ND_TCHECK_2(bp
+ 22);
319 ND_PRINT(" group %s", ipaddr_string(ndo
, bp
+ 8));
320 if (GET_BE_U_4(bp
+ 12) != 0xffffffff)
321 ND_PRINT("/%s", ipaddr_string(ndo
, bp
+ 12));
322 ND_PRINT(" RP %s hold ", ipaddr_string(ndo
, bp
+ 16));
323 unsigned_relts_print(ndo
, GET_BE_U_2(bp
+ 22));
326 case PIMV1_TYPE_ASSERT
:
327 ND_TCHECK_LEN(bp
+ 16, sizeof(nd_ipv4
));
328 ND_PRINT(" for %s > %s", ipaddr_string(ndo
, bp
+ 16),
329 ipaddr_string(ndo
, bp
+ 8));
330 if (GET_BE_U_4(bp
+ 12) != 0xffffffff)
331 ND_PRINT("/%s", ipaddr_string(ndo
, bp
+ 12));
332 ND_TCHECK_4(bp
+ 24);
333 ND_PRINT(" %s pref %u metric %u",
334 (GET_U_1(bp
+ 20) & 0x80) ? "RP-tree" : "SPT",
335 GET_BE_U_4(bp
+ 20) & 0x7fffffff,
336 GET_BE_U_4(bp
+ 24));
338 case PIMV1_TYPE_JOIN_PRUNE
:
339 case PIMV1_TYPE_GRAFT
:
340 case PIMV1_TYPE_GRAFT_ACK
:
341 if (ndo
->ndo_vflag
) {
344 pimv1_join_prune_print(ndo
, bp
+ 8, len
- 8);
349 if ((GET_U_1(bp
+ 4) >> 4) != 1)
350 ND_PRINT(" [v%u]", GET_U_1(bp
+ 4) >> 4);
359 * auto-RP is a cisco protocol, documented at
360 * ftp://ftpeng.cisco.com/ipmulticast/specs/pim-autorp-spec01.txt
362 * This implements version 1+, dated Sept 9, 1998.
365 cisco_autorp_print(netdissect_options
*ndo
,
366 const u_char
*bp
, u_int len
)
372 ndo
->ndo_protocol
= "cisco_autorp";
376 ND_PRINT(" auto-rp ");
380 ND_PRINT("candidate-advert");
386 ND_PRINT("type-0x%02x", type
);
391 numrps
= GET_U_1(bp
+ 1);
395 hold
= GET_BE_U_2(bp
+ 2);
397 unsigned_relts_print(ndo
, GET_BE_U_2(bp
+ 2));
401 /* Next 4 bytes are reserved. */
405 /*XXX skip unless -v? */
409 * numrps entries of the form:
412 * 2 bits: PIM version supported, bit 0 is "supports v1", 1 is "v2".
413 * 8 bits: # of entries for this RP
414 * each entry: 7 bits: reserved, 1 bit: negative,
415 * 8 bits: mask 32 bits: source
416 * lather, rinse, repeat.
418 while (numrps
!= 0) {
425 ND_PRINT(" RP %s", ipaddr_string(ndo
, bp
));
431 switch (GET_U_1(bp
) & 0x3) {
432 case 0: ND_PRINT(" PIMv?");
434 case 1: ND_PRINT(" PIMv1");
436 case 2: ND_PRINT(" PIMv2");
438 case 3: ND_PRINT(" PIMv1+2");
441 if (GET_U_1(bp
) & 0xfc)
442 ND_PRINT(" [rsvd=0x%02x]", GET_U_1(bp
) & 0xfc);
448 nentries
= GET_U_1(bp
);
452 while (nentries
!= 0) {
456 ND_PRINT("%c%s%s/%u", s
, GET_U_1(bp
) & 1 ? "!" : "",
457 ipaddr_string(ndo
, bp
+ 2), GET_U_1(bp
+ 1));
458 if (GET_U_1(bp
) & 0x02) {
461 if (GET_U_1(bp
) & 0xfc) {
462 ND_PRINT("[rsvd=0x%02x]", GET_U_1(bp
) & 0xfc);
478 pim_print(netdissect_options
*ndo
,
479 const u_char
*bp
, u_int len
, const u_char
*bp2
)
481 const struct pim
*pim
= (const struct pim
*)bp
;
484 ndo
->ndo_protocol
= "pim";
485 #ifdef notyet /* currently we see only version and type */
486 ND_TCHECK_1(pim
->pim_rsv
);
489 ND_TCHECK_1(pim
->pim_typever
);
490 pim_typever
= GET_U_1(pim
->pim_typever
);
491 switch (PIM_VER(pim_typever
)) {
493 if (!ndo
->ndo_vflag
) {
494 ND_PRINT("PIMv%u, %s, length %u",
495 PIM_VER(pim_typever
),
496 tok2str(pimv2_type_values
,"Unknown Type",PIM_TYPE(pim_typever
)),
500 ND_PRINT("PIMv%u, length %u\n\t%s",
501 PIM_VER(pim_typever
),
503 tok2str(pimv2_type_values
,"Unknown Type",PIM_TYPE(pim_typever
)));
504 pimv2_print(ndo
, bp
, len
, bp2
);
508 ND_PRINT("PIMv%u, length %u",
509 PIM_VER(pim_typever
),
521 * PIMv2 uses encoded address representations.
523 * The last PIM-SM I-D before RFC2117 was published specified the
524 * following representation for unicast addresses. However, RFC2117
525 * specified no encoding for unicast addresses with the unicast
526 * address length specified in the header. Therefore, we have to
527 * guess which encoding is being used (Cisco's PIMv2 implementation
528 * uses the non-RFC encoding). RFC2117 turns a previously "Reserved"
529 * field into a 'unicast-address-length-in-bytes' field. We guess
530 * that it's the draft encoding if this reserved field is zero.
532 * RFC2362 goes back to the encoded format, and calls the addr length
533 * field "reserved" again.
535 * The first byte is the address family, from:
538 * 1 IP (IP version 4)
539 * 2 IP6 (IP version 6)
541 * 4 HDLC (8-bit multidrop)
543 * 6 802 (includes all 802 media plus Ethernet "canonical format")
545 * 8 E.164 (SMDS, Frame Relay, ATM)
547 * 10 X.121 (X.25, Frame Relay)
552 * 15 E.164 with NSAP format subaddress
554 * In addition, the second byte is an "Encoding". 0 is the default
555 * encoding for the address family, and no other encodings are currently
560 enum pimv2_addrtype
{
561 pimv2_unicast
, pimv2_group
, pimv2_source
565 * 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
566 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
567 * | Addr Family | Encoding Type | Unicast Address |
568 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+++++++
570 * 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
571 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
572 * | Addr Family | Encoding Type | Reserved | Mask Len |
573 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
574 * | Group multicast Address |
575 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
577 * 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
578 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
579 * | Addr Family | Encoding Type | Rsrvd |S|W|R| Mask Len |
580 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
582 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
585 pimv2_addr_print(netdissect_options
*ndo
,
586 const u_char
*bp
, u_int len
, enum pimv2_addrtype at
,
587 u_int addr_len
, int silent
)
596 switch (GET_U_1(bp
)) {
599 addr_len
= (u_int
)sizeof(nd_ipv4
);
603 addr_len
= (u_int
)sizeof(nd_ipv6
);
608 if (GET_U_1(bp
+ 1) != 0)
613 case sizeof(nd_ipv4
):
616 case sizeof(nd_ipv6
):
632 ND_TCHECK_LEN(bp
, addr_len
);
635 ND_PRINT("%s", ipaddr_string(ndo
, bp
));
637 else if (af
== AF_INET6
) {
639 ND_PRINT("%s", ip6addr_string(ndo
, bp
));
641 return hdrlen
+ addr_len
;
644 if (len
< addr_len
+ 2)
646 ND_TCHECK_LEN(bp
, addr_len
+ 2);
649 ND_PRINT("%s", ipaddr_string(ndo
, bp
+ 2));
650 if (GET_U_1(bp
+ 1) != 32)
651 ND_PRINT("/%u", GET_U_1(bp
+ 1));
654 else if (af
== AF_INET6
) {
656 ND_PRINT("%s", ip6addr_string(ndo
, bp
+ 2));
657 if (GET_U_1(bp
+ 1) != 128)
658 ND_PRINT("/%u", GET_U_1(bp
+ 1));
661 if (GET_U_1(bp
) && !silent
) {
662 if (at
== pimv2_group
) {
663 ND_PRINT("(0x%02x)", GET_U_1(bp
));
666 GET_U_1(bp
) & 0x04 ? "S" : "",
667 GET_U_1(bp
) & 0x02 ? "W" : "",
668 GET_U_1(bp
) & 0x01 ? "R" : "");
669 if (GET_U_1(bp
) & 0xf8) {
676 return hdrlen
+ 2 + addr_len
;
684 enum checksum_status
{
690 static enum checksum_status
691 pimv2_check_checksum(netdissect_options
*ndo
, const u_char
*bp
,
692 const u_char
*bp2
, u_int len
)
697 if (!ND_TTEST_LEN(bp
, len
)) {
698 /* We don't have all the data. */
701 ip
= (const struct ip
*)bp2
;
703 struct cksum_vec vec
[1];
707 cksum
= in_cksum(vec
, 1);
708 return (cksum
? INCORRECT
: CORRECT
);
709 } else if (IP_V(ip
) == 6) {
710 const struct ip6_hdr
*ip6
;
712 ip6
= (const struct ip6_hdr
*)bp2
;
713 cksum
= nextproto6_cksum(ndo
, ip6
, bp
, len
, len
, IPPROTO_PIM
);
714 return (cksum
? INCORRECT
: CORRECT
);
721 pimv2_print(netdissect_options
*ndo
,
722 const u_char
*bp
, u_int len
, const u_char
*bp2
)
724 const struct pim
*pim
= (const struct pim
*)bp
;
727 enum checksum_status cksum_status
;
729 u_int pimv2_addr_len
;
731 ndo
->ndo_protocol
= "pimv2";
734 ND_TCHECK_1(pim
->pim_rsv
);
735 pim_typever
= GET_U_1(pim
->pim_typever
);
736 /* RFC5015 allocates the high 4 bits of pim_rsv for "subtype". */
737 pimv2_addr_len
= GET_U_1(pim
->pim_rsv
) & 0x0f;
738 if (pimv2_addr_len
!= 0)
739 ND_PRINT(", RFC2117-encoding");
743 ND_TCHECK_2(pim
->pim_cksum
);
744 ND_PRINT(", cksum 0x%04x ", GET_BE_U_2(pim
->pim_cksum
));
745 if (GET_BE_U_2(pim
->pim_cksum
) == 0) {
746 ND_PRINT("(unverified)");
748 if (PIM_TYPE(pim_typever
) == PIMV2_TYPE_REGISTER
) {
750 * The checksum only covers the packet header,
751 * not the encapsulated packet.
753 cksum_status
= pimv2_check_checksum(ndo
, bp
, bp2
, 8);
754 if (cksum_status
== INCORRECT
) {
756 * To quote RFC 4601, "For interoperability
757 * reasons, a message carrying a checksum
758 * calculated over the entire PIM Register
759 * message should also be accepted."
761 cksum_status
= pimv2_check_checksum(ndo
, bp
, bp2
, len
);
765 * The checksum covers the entire packet.
767 cksum_status
= pimv2_check_checksum(ndo
, bp
, bp2
, len
);
769 switch (cksum_status
) {
772 ND_PRINT("(correct)");
776 ND_PRINT("(incorrect)");
780 ND_PRINT("(unverified)");
787 switch (PIM_TYPE(pim_typever
)) {
788 case PIMV2_TYPE_HELLO
:
790 uint16_t otype
, olen
;
795 otype
= GET_BE_U_2(bp
);
796 olen
= GET_BE_U_2(bp
+ 2);
797 ND_PRINT("\n\t %s Option (%u), length %u, Value: ",
798 tok2str(pimv2_hello_option_values
, "Unknown", otype
),
806 ND_TCHECK_LEN(bp
, olen
);
808 case PIMV2_HELLO_OPTION_HOLDTIME
:
810 ND_PRINT("ERROR: Option Length != 2 Bytes (%u)", olen
);
812 unsigned_relts_print(ndo
,
817 case PIMV2_HELLO_OPTION_LANPRUNEDELAY
:
819 ND_PRINT("ERROR: Option Length != 4 Bytes (%u)", olen
);
822 uint16_t lan_delay
, override_interval
;
823 lan_delay
= GET_BE_U_2(bp
);
824 override_interval
= GET_BE_U_2(bp
+ 2);
825 t_bit
= (lan_delay
& 0x8000)? 1 : 0;
826 lan_delay
&= ~0x8000;
827 ND_PRINT("\n\t T-bit=%u, LAN delay %ums, Override interval %ums",
828 t_bit
, lan_delay
, override_interval
);
832 case PIMV2_HELLO_OPTION_DR_PRIORITY_OLD
:
833 case PIMV2_HELLO_OPTION_DR_PRIORITY
:
836 ND_PRINT("Bi-Directional Capability (Old)");
839 ND_PRINT("%u", GET_BE_U_4(bp
));
842 ND_PRINT("ERROR: Option Length != 4 Bytes (%u)", olen
);
847 case PIMV2_HELLO_OPTION_GENID
:
849 ND_PRINT("ERROR: Option Length != 4 Bytes (%u)", olen
);
851 ND_PRINT("0x%08x", GET_BE_U_4(bp
));
855 case PIMV2_HELLO_OPTION_REFRESH_CAP
:
857 ND_PRINT("ERROR: Option Length != 4 Bytes (%u)", olen
);
859 ND_PRINT("v%u", GET_U_1(bp
));
860 if (GET_U_1(bp
+ 1) != 0) {
861 ND_PRINT(", interval ");
862 unsigned_relts_print(ndo
,
865 if (GET_BE_U_2(bp
+ 2) != 0) {
866 ND_PRINT(" ?0x%04x?",
872 case PIMV2_HELLO_OPTION_BIDIR_CAP
:
875 case PIMV2_HELLO_OPTION_ADDRESS_LIST_OLD
:
876 case PIMV2_HELLO_OPTION_ADDRESS_LIST
:
877 if (ndo
->ndo_vflag
> 1) {
878 const u_char
*ptr
= bp
;
880 while (ptr
< (bp
+olen
)) {
882 advance
= pimv2_addr_print(ndo
, ptr
, plen
, pimv2_unicast
, pimv2_addr_len
, 0);
891 if (ndo
->ndo_vflag
<= 1)
892 print_unknown_data(ndo
, bp
, "\n\t ", olen
);
895 /* do we want to see an additionally hexdump ? */
896 if (ndo
->ndo_vflag
> 1)
897 print_unknown_data(ndo
, bp
, "\n\t ", olen
);
904 case PIMV2_TYPE_REGISTER
:
910 ND_TCHECK_LEN(bp
, PIMV2_REGISTER_FLAG_LEN
);
912 ND_PRINT(", Flags [ %s ]\n\t",
913 tok2str(pimv2_register_flag_values
,
918 /* encapsulated multicast packet */
921 ip
= (const struct ip
*)bp
;
922 ND_TCHECK_1(ip
->ip_vhl
);
924 case 0: /* Null header */
925 ND_TCHECK_4(ip
->ip_dst
);
926 ND_PRINT("IP-Null-header %s > %s",
927 ipaddr_string(ndo
, ip
->ip_src
),
928 ipaddr_string(ndo
, ip
->ip_dst
));
932 ip_print(ndo
, bp
, len
);
936 ip6_print(ndo
, bp
, len
);
940 ND_PRINT("IP ver %u", IP_V(ip
));
946 case PIMV2_TYPE_REGISTER_STOP
:
948 if ((advance
= pimv2_addr_print(ndo
, bp
, len
, pimv2_group
, pimv2_addr_len
, 0)) < 0)
950 bp
+= advance
; len
-= advance
;
951 ND_PRINT(" source=");
952 if ((advance
= pimv2_addr_print(ndo
, bp
, len
, pimv2_unicast
, pimv2_addr_len
, 0)) < 0)
954 bp
+= advance
; len
-= advance
;
957 case PIMV2_TYPE_JOIN_PRUNE
:
958 case PIMV2_TYPE_GRAFT
:
959 case PIMV2_TYPE_GRAFT_ACK
:
964 * 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
965 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
966 * |PIM Ver| Type | Addr length | Checksum |
967 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
968 * | Unicast-Upstream Neighbor Address |
969 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
970 * | Reserved | Num groups | Holdtime |
971 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
972 * | Encoded-Multicast Group Address-1 |
973 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
974 * | Number of Joined Sources | Number of Pruned Sources |
975 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
976 * | Encoded-Joined Source Address-1 |
977 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
980 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
981 * | Encoded-Joined Source Address-n |
982 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
983 * | Encoded-Pruned Source Address-1 |
984 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
987 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
988 * | Encoded-Pruned Source Address-n |
989 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
992 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
993 * | Encoded-Multicast Group Address-n |
994 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
1004 if (PIM_TYPE(pim_typever
) != 7) { /*not for Graft-ACK*/
1005 ND_PRINT(", upstream-neighbor: ");
1006 if ((advance
= pimv2_addr_print(ndo
, bp
, len
, pimv2_unicast
, pimv2_addr_len
, 0)) < 0)
1008 bp
+= advance
; len
-= advance
;
1013 ngroup
= GET_U_1(bp
+ 1);
1014 holdtime
= GET_BE_U_2(bp
+ 2);
1015 ND_PRINT("\n\t %u group(s)", ngroup
);
1016 if (PIM_TYPE(pim_typever
) != 7) { /*not for Graft-ACK*/
1017 ND_PRINT(", holdtime: ");
1018 if (holdtime
== 0xffff)
1019 ND_PRINT("infinite");
1021 unsigned_relts_print(ndo
, holdtime
);
1024 for (i
= 0; i
< ngroup
; i
++) {
1025 ND_PRINT("\n\t group #%u: ", i
+1);
1026 if ((advance
= pimv2_addr_print(ndo
, bp
, len
, pimv2_group
, pimv2_addr_len
, 0)) < 0)
1028 bp
+= advance
; len
-= advance
;
1032 njoin
= GET_BE_U_2(bp
);
1033 nprune
= GET_BE_U_2(bp
+ 2);
1034 ND_PRINT(", joined sources: %u, pruned sources: %u", njoin
, nprune
);
1036 for (j
= 0; j
< njoin
; j
++) {
1037 ND_PRINT("\n\t joined source #%u: ", j
+1);
1038 if ((advance
= pimv2_addr_print(ndo
, bp
, len
, pimv2_source
, pimv2_addr_len
, 0)) < 0)
1040 bp
+= advance
; len
-= advance
;
1042 for (j
= 0; j
< nprune
; j
++) {
1043 ND_PRINT("\n\t pruned source #%u: ", j
+1);
1044 if ((advance
= pimv2_addr_print(ndo
, bp
, len
, pimv2_source
, pimv2_addr_len
, 0)) < 0)
1046 bp
+= advance
; len
-= advance
;
1052 case PIMV2_TYPE_BOOTSTRAP
:
1056 /* Fragment Tag, Hash Mask len, and BSR-priority */
1060 ND_PRINT(" tag=%x", GET_BE_U_2(bp
));
1066 ND_PRINT(" hashmlen=%u", GET_U_1(bp
));
1069 ND_TCHECK_1(bp
+ 2);
1070 ND_PRINT(" BSRprio=%u", GET_U_1(bp
+ 1));
1074 /* Encoded-Unicast-BSR-Address */
1076 if ((advance
= pimv2_addr_print(ndo
, bp
, len
, pimv2_unicast
, pimv2_addr_len
, 0)) < 0)
1081 for (i
= 0; len
> 0; i
++) {
1082 /* Encoded-Group Address */
1083 ND_PRINT(" (group%u: ", i
);
1084 if ((advance
= pimv2_addr_print(ndo
, bp
, len
, pimv2_group
, pimv2_addr_len
, 0)) < 0)
1089 /* RP-Count, Frag RP-Cnt, and rsvd */
1093 ND_PRINT(" RPcnt=%u", GET_U_1(bp
));
1096 ND_TCHECK_1(bp
+ 1);
1097 frpcnt
= GET_U_1(bp
+ 1);
1098 ND_PRINT(" FRPcnt=%u", frpcnt
);
1104 for (j
= 0; j
< frpcnt
&& len
> 0; j
++) {
1106 ND_PRINT(" RP%u=", j
);
1107 if ((advance
= pimv2_addr_print(ndo
, bp
, len
,
1118 ND_PRINT(",holdtime=");
1119 unsigned_relts_print(ndo
,
1123 ND_TCHECK_1(bp
+ 2);
1124 ND_PRINT(",prio=%u", GET_U_1(bp
+ 2));
1134 case PIMV2_TYPE_ASSERT
:
1135 ND_PRINT(" group=");
1136 if ((advance
= pimv2_addr_print(ndo
, bp
, len
, pimv2_group
, pimv2_addr_len
, 0)) < 0)
1138 bp
+= advance
; len
-= advance
;
1140 if ((advance
= pimv2_addr_print(ndo
, bp
, len
, pimv2_unicast
, pimv2_addr_len
, 0)) < 0)
1142 bp
+= advance
; len
-= advance
;
1146 if (GET_U_1(bp
) & 0x80)
1148 ND_PRINT(" pref=%u", GET_BE_U_4(bp
) & 0x7fffffff);
1149 ND_PRINT(" metric=%u", GET_BE_U_4(bp
+ 4));
1152 case PIMV2_TYPE_CANDIDATE_RP
:
1156 /* Prefix-Cnt, Priority, and Holdtime */
1160 ND_PRINT(" prefix-cnt=%u", GET_U_1(bp
));
1161 pfxcnt
= GET_U_1(bp
);
1164 ND_TCHECK_1(bp
+ 1);
1165 ND_PRINT(" prio=%u", GET_U_1(bp
+ 1));
1168 ND_TCHECK_2(bp
+ 2);
1169 ND_PRINT(" holdtime=");
1170 unsigned_relts_print(ndo
, GET_BE_U_2(bp
+ 2));
1174 /* Encoded-Unicast-RP-Address */
1176 if ((advance
= pimv2_addr_print(ndo
, bp
, len
, pimv2_unicast
, pimv2_addr_len
, 0)) < 0)
1181 /* Encoded-Group Addresses */
1182 for (i
= 0; i
< pfxcnt
&& len
> 0; i
++) {
1183 ND_PRINT(" Group%u=", i
);
1184 if ((advance
= pimv2_addr_print(ndo
, bp
, len
, pimv2_group
, pimv2_addr_len
, 0)) < 0)
1192 case PIMV2_TYPE_PRUNE_REFRESH
:
1194 if ((advance
= pimv2_addr_print(ndo
, bp
, len
, pimv2_unicast
, pimv2_addr_len
, 0)) < 0)
1199 if ((advance
= pimv2_addr_print(ndo
, bp
, len
, pimv2_group
, pimv2_addr_len
, 0)) < 0)
1203 ND_PRINT(" forwarder=");
1204 if ((advance
= pimv2_addr_print(ndo
, bp
, len
, pimv2_unicast
, pimv2_addr_len
, 0)) < 0)
1212 unsigned_relts_print(ndo
, GET_BE_U_2(bp
));
1215 case PIMV2_TYPE_DF_ELECTION
:
1216 subtype
= PIM_SUBTYPE(GET_U_1(pim
->pim_rsv
));
1217 ND_PRINT("\n\t %s,", tok2str( pimv2_df_election_flag_values
,
1218 "Unknown", subtype
) );
1221 if ((advance
= pimv2_addr_print(ndo
, bp
, len
, pimv2_unicast
, pimv2_addr_len
, 0)) < 0) {
1226 ND_PRINT(" sender pref=%u", GET_BE_U_4(bp
) );
1227 ND_PRINT(" sender metric=%u", GET_BE_U_4(bp
+ 4));
1233 case PIMV2_DF_ELECTION_BACKOFF
:
1234 case PIMV2_DF_ELECTION_PASS
:
1235 ND_PRINT("\n\t %s addr=", PIMV2_DF_ELECTION_PASS_BACKOFF_STR(subtype
));
1236 if ((advance
= pimv2_addr_print(ndo
, bp
, len
, pimv2_unicast
, pimv2_addr_len
, 0)) < 0) {
1242 ND_PRINT(" %s pref=%u", PIMV2_DF_ELECTION_PASS_BACKOFF_STR(subtype
), GET_BE_U_4(bp
) );
1243 ND_PRINT(" %s metric=%u", PIMV2_DF_ELECTION_PASS_BACKOFF_STR(subtype
), GET_BE_U_4(bp
+ 4));
1248 if (subtype
== PIMV2_DF_ELECTION_BACKOFF
) {
1249 ND_PRINT(" interval %dms", GET_BE_U_2(bp
));
1259 ND_PRINT(" [type %u]", PIM_TYPE(pim_typever
));
1266 nd_print_trunc(ndo
);