xref: /freebsd/share/man/man4/icmp6.4 (revision 1025a2007fb67813ef7c1a91bb056d000d48b5e7)
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59.\"	KAME $Id: icmp6.4,v 1.1 1999/12/17 09:47:01 itojun Exp $
60.\" $FreeBSD$
61.\"
62.Dd March 13, 2000
63.Dt ICMP6 4
64.Os KAME
65."
66.Sh NAME
67.Nm icmp6
68.Nd Internet Control Message Protocol for IPv6
69."
70.Sh SYNOPSIS
71.Fd #include <sys/types.h>
72.Fd #include <sys/socket.h>
73.Fd #include <netinet/in.h>
74.Fd #include <netinet/icmp6.h>
75.Ft int
76.Fn socket AF_INET6 SOCK_RAW proto
77."
78.Sh DESCRIPTION
79.Tn ICMPv6
80is the error and control message protocol used
81by
82.Tn IPv6
83and the Internet protocol family.
84It may be accessed through a
85.Dq raw socket
86for network monitoring and diagnostic functions.
87The
88.Fa proto
89parameter to the socket call to create an
90.Tn ICMPv6
91socket is obtained from
92.Xr getprotobyname 3 ,
93or you can use
94.Dv IPPROTO_ICMPV6 .
95.Tn ICMPv6
96sockets are connectionless, and are normally used with the
97.Xr sendto 2
98and
99.Xr recvfrom 2
100calls, though the
101.Xr connect 2
102call may also be used to fix the destination for future packets
103(in which case the
104.Xr read 2
105or
106.Xr recv 2
107and
108.Xr write 2
109or
110.Xr send 2
111system calls may be used).
112.Pp
113Outgoing packets automatically have an
114.Tn IPv6
115header prepended to them
116.Pq based on the destination address .
117.Tn ICMPv6
118pseudo header checksum field
119.Pq Li icmp6_cksum
120will be filled automatically by the kernel.
121Incoming packets are received without the
122.Tn IPv6
123header nor IPv6 extension headers.
124Notice that this behavior is opposite from
125.Tn IPv4
126raw sockets and.
127.Tn ICMPv4
128sockets.
129.Pp
130.Ss ICMPv6 type/code filter
131Each
132.Tn ICMPv6
133raw socket has an associated filter whose datatype is defined as
134.Li struct icmp6_filter ;
135.Pp
136This structure, along with the macros and constants defined later in
137this section, are defined as a result of including the
138.Aq Li netinet/icmp6.h
139header.
140.Pp
141The current filter is fetched and stored using
142.Xr getsockopt 2
143and
144.Xr setsockopt 2
145with a level of
146.Dv IPPROTO_ICMPV6
147and an option name of
148.Dv ICMP6_FILTER .
149.Pp
150Six macros operate on an icmp6_filter structure:
151.\" is "Fn" legal for macros?
152.Bl -item -compact -offset indent
153.It Ft void
154.Fn ICMP6_FILTER_SETPASSALL "struct icmp6_filter *"
155.It Ft void
156.Fn ICMP6_FILTER_SETBLOCKALL "struct icmp6_filter *"
157.It Ft void
158.Fn ICMP6_FILTER_SETPASS "int" "struct icmp6_filter *"
159.It Ft void
160.Fn ICMP6_FILTER_SETBLOCK "int" "struct icmp6_filter *"
161.It Ft int
162.Fn ICMP6_FILTER_WILLPASS "int" "const struct icmp6_filter *"
163.It Ft int
164.Fn ICMP6_FILTER_WILLBLOCK "int" "const struct icmp6_filter *"
165.El
166.Pp
167The first argument to the last four macros
168.Pq an integer
169is an
170.Tn ICMPv6
171message type, between 0 and 255.
172The pointer argument to all six
173macros is a pointer to a filter that is modified by the first four
174macros examined by the last two macros.
175.Pp
176The first two macros,
177.Dv SETPASSALL
178and
179.Dv SETBLOCKALL ,
180let us specify that
181all
182.Tn ICMPv6 messages are passed to the application or that all
183.Tn ICMPv6
184messages are blocked from being passed to the application.
185.Pp
186The next two macros,
187.Dv SETPASS
188and
189.Dv SETBLOCK ,
190let us specify that
191messages of a given
192.Tn ICMPv6
193type should be passed to the application
194or not passed to the application
195.Pq blocked .
196.Pp
197The final two macros,
198.Dv WILLPASS
199and
200.Dv WILLBLOCK ,
201return true or false
202depending whether the specified message type is passed to the
203application or blocked from being passed to the application by the
204filter pointed to by the second argument.
205.Pp
206When an
207.Tn ICMPv6
208raw socket is created, it will by default pass all
209.Tn ICMPv6
210message types to the application.
211.Pp
212For further discussions see RFC2292.
213.\"
214.Sh DIAGNOSTICS
215A socket operation may fail with one of the following errors returned:
216.Bl -tag -width [EADDRNOTAVAIL]
217.It Bq Er EISCONN
218when trying to establish a connection on a socket which
219already has one, or when trying to send a datagram with the destination
220address specified and the socket is already connected;
221.It Bq Er ENOTCONN
222when trying to send a datagram, but
223no destination address is specified, and the socket hasn't been
224connected;
225.It Bq Er ENOBUFS
226when the system runs out of memory for
227an internal data structure;
228.It Bq Er EADDRNOTAVAIL
229when an attempt is made to create a
230socket with a network address for which no network interface exists.
231.El
232."
233.Sh SEE ALSO
234.Xr send 2 ,
235.Xr recv 2 ,
236.Xr intro 4 ,
237.Xr inet6 4 ,
238.Xr ip6 4
239.Rs
240.%A W. Stevens
241.%A M. Thomas
242.%R RFC
243.%N 2292
244.%D February 1998
245.%T "Advanced Sockets API for IPv6"
246.Re
247.Rs
248.%A A. Conta
249.%A S. Deering
250.%R RFC
251.%N 2463
252.%D December 1998
253.%T "Internet Control Message Protocol (ICMPv6) for the Internet Protocol Version 6 (IPv6) Specification"
254.Re
255."
256.Sh HISTORY
257The implementation is based on KAME stack
258.Po
259which is decendant of WIDE hydrangea IPv6 stack kit
260.Pc .
261.Pp
262Part of the document was shamelessly copied from RFC2292.
263