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The Tcpdump Group git mirrors - tcpdump/blob - ip6.h
1 /* $NetBSD: ip6.h,v 1.9 2000/07/13 05:34:21 itojun Exp $ */
2 /* $KAME: ip6.h,v 1.9 2000/07/02 21:01:32 itojun Exp $ */
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65 * @(#)ip.h 8.1 (Berkeley) 6/10/93
68 #ifndef _NETINET_IP6_H_
69 #define _NETINET_IP6_H_
72 * Definition for internet protocol version 6.
79 u_int32_t ip6_un1_flow
; /* 20 bits of flow-ID */
80 u_int16_t ip6_un1_plen
; /* payload length */
81 u_int8_t ip6_un1_nxt
; /* next header */
82 u_int8_t ip6_un1_hlim
; /* hop limit */
84 u_int8_t ip6_un2_vfc
; /* 4 bits version, top 4 bits class */
86 struct in6_addr ip6_src
; /* source address */
87 struct in6_addr ip6_dst
; /* destination address */
90 #define ip6_vfc ip6_ctlun.ip6_un2_vfc
91 #define ip6_flow ip6_ctlun.ip6_un1.ip6_un1_flow
92 #define ip6_plen ip6_ctlun.ip6_un1.ip6_un1_plen
93 #define ip6_nxt ip6_ctlun.ip6_un1.ip6_un1_nxt
94 #define ip6_hlim ip6_ctlun.ip6_un1.ip6_un1_hlim
95 #define ip6_hops ip6_ctlun.ip6_un1.ip6_un1_hlim
97 #define IPV6_VERSION 0x60
98 #define IPV6_VERSION_MASK 0xf0
100 /* in network endian */
101 #define IPV6_FLOWINFO_MASK ((u_int32_t)htonl(0x0fffffff)) /* flow info (28 bits) */
102 #define IPV6_FLOWLABEL_MASK ((u_int32_t)htonl(0x000fffff)) /* flow label (20 bits) */
104 /* ECN bits proposed by Sally Floyd */
105 #define IP6TOS_CE 0x01 /* congestion experienced */
106 #define IP6TOS_ECT 0x02 /* ECN-capable transport */
118 /* Hop-by-Hop options header */
119 /* XXX should we pad it to force alignment on an 8-byte boundary? */
121 u_int8_t ip6h_nxt
; /* next header */
122 u_int8_t ip6h_len
; /* length in units of 8 octets */
123 /* followed by options */
126 /* Destination options header */
127 /* XXX should we pad it to force alignment on an 8-byte boundary? */
129 u_int8_t ip6d_nxt
; /* next header */
130 u_int8_t ip6d_len
; /* length in units of 8 octets */
131 /* followed by options */
134 /* Option types and related macros */
135 #define IP6OPT_PAD1 0x00 /* 00 0 00000 */
136 #define IP6OPT_PADN 0x01 /* 00 0 00001 */
137 #define IP6OPT_JUMBO 0xC2 /* 11 0 00010 = 194 */
138 #define IP6OPT_JUMBO_LEN 6
139 #define IP6OPT_ROUTER_ALERT 0x05 /* 00 0 00101 */
141 #define IP6OPT_RTALERT_LEN 4
142 #define IP6OPT_RTALERT_MLD 0 /* Datagram contains an MLD message */
143 #define IP6OPT_RTALERT_RSVP 1 /* Datagram contains an RSVP message */
144 #define IP6OPT_RTALERT_ACTNET 2 /* contains an Active Networks msg */
145 #define IP6OPT_MINLEN 2
147 #define IP6OPT_BINDING_UPDATE 0xc6 /* 11 0 00110 */
148 #define IP6OPT_BINDING_ACK 0x07 /* 00 0 00111 */
149 #define IP6OPT_BINDING_REQ 0x08 /* 00 0 01000 */
150 #define IP6OPT_HOME_ADDRESS 0xc9 /* 11 0 01001 */
151 #define IP6OPT_EID 0x8a /* 10 0 01010 */
153 #define IP6OPT_TYPE(o) ((o) & 0xC0)
154 #define IP6OPT_TYPE_SKIP 0x00
155 #define IP6OPT_TYPE_DISCARD 0x40
156 #define IP6OPT_TYPE_FORCEICMP 0x80
157 #define IP6OPT_TYPE_ICMP 0xC0
159 #define IP6OPT_MUTABLE 0x20
163 u_int8_t ip6r_nxt
; /* next header */
164 u_int8_t ip6r_len
; /* length in units of 8 octets */
165 u_int8_t ip6r_type
; /* routing type */
166 u_int8_t ip6r_segleft
; /* segments left */
167 /* followed by routing type specific data */
170 /* Type 0 Routing header */
172 u_int8_t ip6r0_nxt
; /* next header */
173 u_int8_t ip6r0_len
; /* length in units of 8 octets */
174 u_int8_t ip6r0_type
; /* always zero */
175 u_int8_t ip6r0_segleft
; /* segments left */
176 u_int8_t ip6r0_reserved
; /* reserved field */
177 u_int8_t ip6r0_slmap
[3]; /* strict/loose bit map */
178 struct in6_addr ip6r0_addr
[1]; /* up to 23 addresses */
181 /* Fragment header */
183 u_int8_t ip6f_nxt
; /* next header */
184 u_int8_t ip6f_reserved
; /* reserved field */
185 u_int16_t ip6f_offlg
; /* offset, reserved, and flag */
186 u_int32_t ip6f_ident
; /* identification */
190 #define IP6F_OFF_MASK ((u_int16_t)htons(0xfff8)) /* mask out offset from _offlg */
191 #define IP6F_RESERVED_MASK ((u_int16_t)htons(0x0006)) /* reserved bits in ip6f_offlg */
192 #define IP6F_MORE_FRAG ((u_int16_t)htons(0x0001)) /* more-fragments flag */
194 #endif /* not _NETINET_IP6_H_ */