if_inarp.h revision 1.16 1 /* $NetBSD: if_inarp.h,v 1.16 1995/04/13 06:26:04 cgd Exp $ */
2
3 /*
4 * Copyright (c) 1982, 1986, 1993
5 * The Regents of the University of California. All rights reserved.
6 *
7 * Redistribution and use in source and binary forms, with or without
8 * modification, are permitted provided that the following conditions
9 * are met:
10 * 1. Redistributions of source code must retain the above copyright
11 * notice, this list of conditions and the following disclaimer.
12 * 2. Redistributions in binary form must reproduce the above copyright
13 * notice, this list of conditions and the following disclaimer in the
14 * documentation and/or other materials provided with the distribution.
15 * 3. All advertising materials mentioning features or use of this software
16 * must display the following acknowledgement:
17 * This product includes software developed by the University of
18 * California, Berkeley and its contributors.
19 * 4. Neither the name of the University nor the names of its contributors
20 * may be used to endorse or promote products derived from this software
21 * without specific prior written permission.
22 *
23 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
24 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
25 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
26 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
27 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
28 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
29 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
30 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
31 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
32 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
33 * SUCH DAMAGE.
34 *
35 * @(#)if_ether.h 8.1 (Berkeley) 6/10/93
36 */
37
38 /*
39 * Ethernet address - 6 octets
40 * this is only used by the ethers(3) functions.
41 */
42 struct ether_addr {
43 u_int8_t ether_addr_octet[6];
44 };
45
46 /*
47 * Structure of a 10Mb/s Ethernet header.
48 */
49 struct ether_header {
50 u_int8_t ether_dhost[6];
51 u_int8_t ether_shost[6];
52 u_int16_t ether_type;
53 };
54
55 #define ETHERTYPE_PUP 0x0200 /* PUP protocol */
56 #define ETHERTYPE_IP 0x0800 /* IP protocol */
57 #define ETHERTYPE_ARP 0x0806 /* address resolution protocol */
58 #define ETHERTYPE_REVARP 0x8035 /* reverse addr resolution protocol */
59
60 /*
61 * The ETHERTYPE_NTRAILER packet types starting at ETHERTYPE_TRAIL have
62 * (type-ETHERTYPE_TRAIL)*512 bytes of data followed
63 * by an ETHER type (as given above) and then the (variable-length) header.
64 */
65 #define ETHERTYPE_TRAIL 0x1000 /* Trailer packet */
66 #define ETHERTYPE_NTRAILER 16
67
68 #define ETHERMTU 1500
69 #define ETHERMIN (60-14)
70
71 #ifdef _KERNEL
72 /*
73 * Macro to map an IP multicast address to an Ethernet multicast address.
74 * The high-order 25 bits of the Ethernet address are statically assigned,
75 * and the low-order 23 bits are taken from the low end of the IP address.
76 */
77 #define ETHER_MAP_IP_MULTICAST(ipaddr, enaddr) \
78 /* struct in_addr *ipaddr; */ \
79 /* u_int8_t enaddr[6]; */ \
80 { \
81 (enaddr)[0] = 0x01; \
82 (enaddr)[1] = 0x00; \
83 (enaddr)[2] = 0x5e; \
84 (enaddr)[3] = ((u_int8_t *)ipaddr)[1] & 0x7f; \
85 (enaddr)[4] = ((u_int8_t *)ipaddr)[2]; \
86 (enaddr)[5] = ((u_int8_t *)ipaddr)[3]; \
87 }
88 #endif
89
90 /*
91 * Ethernet Address Resolution Protocol.
92 *
93 * See RFC 826 for protocol description. Structure below is adapted
94 * to resolving internet addresses. Field names used correspond to
95 * RFC 826.
96 */
97 struct ether_arp {
98 struct arphdr ea_hdr; /* fixed-size header */
99 u_int8_t arp_sha[6]; /* sender hardware address */
100 u_int8_t arp_spa[4]; /* sender protocol address */
101 u_int8_t arp_tha[6]; /* target hardware address */
102 u_int8_t arp_tpa[4]; /* target protocol address */
103 };
104 #define arp_hrd ea_hdr.ar_hrd
105 #define arp_pro ea_hdr.ar_pro
106 #define arp_hln ea_hdr.ar_hln
107 #define arp_pln ea_hdr.ar_pln
108 #define arp_op ea_hdr.ar_op
109
110 /*
111 * Structure shared between the ethernet driver modules and
112 * the address resolution code. For example, each ec_softc or il_softc
113 * begins with this structure.
114 */
115 struct arpcom {
116 struct ifnet ac_if; /* network-visible interface */
117 u_int8_t ac_enaddr[6]; /* ethernet hardware address */
118 struct in_addr ac_ipaddr; /* copy of ip address- XXX */
119 struct ether_multi *ac_multiaddrs; /* list of ether multicast addrs */
120 int ac_multicnt; /* length of ac_multiaddrs list */
121 };
122
123 struct llinfo_arp {
124 struct llinfo_arp *la_next;
125 struct llinfo_arp *la_prev;
126 struct rtentry *la_rt;
127 struct mbuf *la_hold; /* last packet until resolved/timeout */
128 long la_asked; /* last time we QUERIED for this addr */
129 #define la_timer la_rt->rt_rmx.rmx_expire /* deletion time in seconds */
130 };
131
132 struct sockaddr_inarp {
133 u_int8_t sin_len;
134 u_int8_t sin_family;
135 u_int16_t sin_port;
136 struct in_addr sin_addr;
137 struct in_addr sin_srcaddr;
138 u_int16_t sin_tos;
139 u_int16_t sin_other;
140 #define SIN_PROXY 1
141 };
142
143 /*
144 * IP and ethernet specific routing flags
145 */
146 #define RTF_USETRAILERS RTF_PROTO1 /* use trailers */
147 #define RTF_ANNOUNCE RTF_PROTO2 /* announce new arp entry */
148
149 #ifdef _KERNEL
150 u_int8_t etherbroadcastaddr[6];
151 u_int8_t ether_ipmulticast_min[6];
152 u_int8_t ether_ipmulticast_max[6];
153 struct ifqueue arpintrq;
154
155 struct llinfo_arp llinfo_arp; /* head of the llinfo queue */
156
157 void arpwhohas __P((struct arpcom *, struct in_addr *));
158 void arpintr __P((void));
159 int arpresolve __P((struct arpcom *,
160 struct rtentry *, struct mbuf *, struct sockaddr *, u_char *));
161 void arp_ifinit __P((struct arpcom *, struct ifaddr *));
162 void arp_rtrequest __P((int, struct rtentry *, struct sockaddr *));
163
164 int ether_addmulti __P((struct ifreq *, struct arpcom *));
165 int ether_delmulti __P((struct ifreq *, struct arpcom *));
166
167 /*
168 * Ethernet multicast address structure. There is one of these for each
169 * multicast address or range of multicast addresses that we are supposed
170 * to listen to on a particular interface. They are kept in a linked list,
171 * rooted in the interface's arpcom structure. (This really has nothing to
172 * do with ARP, or with the Internet address family, but this appears to be
173 * the minimally-disrupting place to put it.)
174 */
175 struct ether_multi {
176 u_int8_t enm_addrlo[6]; /* low or only address of range */
177 u_int8_t enm_addrhi[6]; /* high or only address of range */
178 struct arpcom *enm_ac; /* back pointer to arpcom */
179 u_int enm_refcount; /* no. claims to this addr/range */
180 struct ether_multi *enm_next; /* ptr to next ether_multi */
181 };
182
183 /*
184 * Structure used by macros below to remember position when stepping through
185 * all of the ether_multi records.
186 */
187 struct ether_multistep {
188 struct ether_multi *e_enm;
189 };
190
191 /*
192 * Macro for looking up the ether_multi record for a given range of Ethernet
193 * multicast addresses connected to a given arpcom structure. If no matching
194 * record is found, "enm" returns NULL.
195 */
196 #define ETHER_LOOKUP_MULTI(addrlo, addrhi, ac, enm) \
197 /* u_int8_t addrlo[6]; */ \
198 /* u_int8_t addrhi[6]; */ \
199 /* struct arpcom *ac; */ \
200 /* struct ether_multi *enm; */ \
201 { \
202 for ((enm) = (ac)->ac_multiaddrs; \
203 (enm) != NULL && \
204 (bcmp((enm)->enm_addrlo, (addrlo), 6) != 0 || \
205 bcmp((enm)->enm_addrhi, (addrhi), 6) != 0); \
206 (enm) = (enm)->enm_next); \
207 }
208
209 /*
210 * Macro to step through all of the ether_multi records, one at a time.
211 * The current position is remembered in "step", which the caller must
212 * provide. ETHER_FIRST_MULTI(), below, must be called to initialize "step"
213 * and get the first record. Both macros return a NULL "enm" when there
214 * are no remaining records.
215 */
216 #define ETHER_NEXT_MULTI(step, enm) \
217 /* struct ether_multistep step; */ \
218 /* struct ether_multi *enm; */ \
219 { \
220 if (((enm) = (step).e_enm) != NULL) \
221 (step).e_enm = (enm)->enm_next; \
222 }
223
224 #define ETHER_FIRST_MULTI(step, ac, enm) \
225 /* struct ether_multistep step; */ \
226 /* struct arpcom *ac; */ \
227 /* struct ether_multi *enm; */ \
228 { \
229 (step).e_enm = (ac)->ac_multiaddrs; \
230 ETHER_NEXT_MULTI((step), (enm)); \
231 }
232 #endif
233