9d5abbddbf
especially in troff files.
259 lines
11 KiB
Raku
259 lines
11 KiB
Raku
.\" Copyright (c) 1983, 1986, 1993
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.\" The Regents of the University of California. All rights reserved.
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.\"
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.\" Redistribution and use in source and binary forms, with or without
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.\" modification, are permitted provided that the following conditions
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.\" are met:
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.\" 1. Redistributions of source code must retain the above copyright
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.\" notice, this list of conditions and the following disclaimer.
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.\" 2. Redistributions in binary form must reproduce the above copyright
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.\" notice, this list of conditions and the following disclaimer in the
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.\" documentation and/or other materials provided with the distribution.
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.\" 3. All advertising materials mentioning features or use of this software
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.\" must display the following acknowledgement:
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.\" This product includes software developed by the University of
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.\" California, Berkeley and its contributors.
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.\" 4. Neither the name of the University nor the names of its contributors
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.\" may be used to endorse or promote products derived from this software
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.\" without specific prior written permission.
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.\"
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.\" THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
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.\" ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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.\" IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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.\" ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
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.\" FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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.\" DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
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.\" OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
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.\" HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
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.\" LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
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.\" OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
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.\" SUCH DAMAGE.
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.\"
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.\" @(#)7.t 8.1 (Berkeley) 6/8/93
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.\"
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.\" $FreeBSD$
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.\"
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.nr H2 1
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.br
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.ne 30v
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.\".ds RH "Socket/protocol interface
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.NH
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\s+2Socket/protocol interface\s0
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.PP
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The interface between the socket routines and the communication
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protocols is through the \fIpr_usrreq\fP routine defined in the
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protocol switch table. The following requests to a protocol
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module are possible:
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.DS
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._d
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#define PRU_ATTACH 0 /* attach protocol */
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#define PRU_DETACH 1 /* detach protocol */
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#define PRU_BIND 2 /* bind socket to address */
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#define PRU_LISTEN 3 /* listen for connection */
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#define PRU_CONNECT 4 /* establish connection to peer */
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#define PRU_ACCEPT 5 /* accept connection from peer */
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#define PRU_DISCONNECT 6 /* disconnect from peer */
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#define PRU_SHUTDOWN 7 /* won't send any more data */
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#define PRU_RCVD 8 /* have taken data; more room now */
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#define PRU_SEND 9 /* send this data */
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#define PRU_ABORT 10 /* abort (fast DISCONNECT, DETATCH) */
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#define PRU_CONTROL 11 /* control operations on protocol */
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#define PRU_SENSE 12 /* return status into m */
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#define PRU_RCVOOB 13 /* retrieve out of band data */
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#define PRU_SENDOOB 14 /* send out of band data */
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#define PRU_SOCKADDR 15 /* fetch socket's address */
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#define PRU_PEERADDR 16 /* fetch peer's address */
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#define PRU_CONNECT2 17 /* connect two sockets */
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/* begin for protocols internal use */
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#define PRU_FASTTIMO 18 /* 200ms timeout */
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#define PRU_SLOWTIMO 19 /* 500ms timeout */
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#define PRU_PROTORCV 20 /* receive from below */
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#define PRU_PROTOSEND 21 /* send to below */
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.DE
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A call on the user request routine is of the form,
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.DS
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._f
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error = (*protosw[].pr_usrreq)(so, req, m, addr, rights);
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int error; struct socket *so; int req; struct mbuf *m, *addr, *rights;
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.DE
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The mbuf data chain \fIm\fP is supplied for output operations
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and for certain other operations where it is to receive a result.
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The address \fIaddr\fP is supplied for address-oriented requests
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such as PRU_BIND and PRU_CONNECT.
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The \fIrights\fP parameter is an optional pointer to an mbuf
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chain containing user-specified capabilities (see the \fIsendmsg\fP
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and \fIrecvmsg\fP system calls). The protocol is responsible for
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disposal of the data mbuf chains on output operations.
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A non-zero return value gives a
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UNIX error number which should be passed to higher level software.
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The following paragraphs describe each
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of the requests possible.
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.IP PRU_ATTACH
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.br
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When a protocol is bound to a socket (with the \fIsocket\fP
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system call) the protocol module is called with this
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request. It is the responsibility of the protocol module to
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allocate any resources necessary.
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The ``attach'' request
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will always precede any of the other requests, and should not
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occur more than once.
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.IP PRU_DETACH
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.br
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This is the antithesis of the attach request, and is used
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at the time a socket is deleted. The protocol module may
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deallocate any resources assigned to the socket.
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.IP PRU_BIND
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.br
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When a socket is initially created it has no address bound
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to it. This request indicates that an address should be bound to
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an existing socket. The protocol module must verify that the
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requested address is valid and available for use.
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.IP PRU_LISTEN
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.br
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The ``listen'' request indicates the user wishes to listen
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for incoming connection requests on the associated socket.
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The protocol module should perform any state changes needed
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to carry out this request (if possible). A ``listen'' request
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always precedes a request to accept a connection.
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.IP PRU_CONNECT
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.br
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The ``connect'' request indicates the user wants to establish
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an association. The \fIaddr\fP parameter supplied describes
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the peer to be connected to. The effect of a connect request
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may vary depending on the protocol. Virtual circuit protocols,
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such as TCP [Postel81b], use this request to initiate establishment of a
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TCP connection. Datagram protocols, such as UDP [Postel80], simply
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record the peer's address in a private data structure and use
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it to tag all outgoing packets. There are no restrictions
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on how many times a connect request may be used after an attach.
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If a protocol supports the notion of \fImulti-casting\fP, it
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is possible to use multiple connects to establish a multi-cast
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group. Alternatively, an association may be broken by a
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PRU_DISCONNECT request, and a new association created with a
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subsequent connect request; all without destroying and creating
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a new socket.
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.IP PRU_ACCEPT
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.br
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Following a successful PRU_LISTEN request and the arrival
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of one or more connections, this request is made to
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indicate the user
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has accepted the first connection on the queue of
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pending connections. The protocol module should fill
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in the supplied address buffer with the address of the
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connected party.
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.IP PRU_DISCONNECT
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.br
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Eliminate an association created with a PRU_CONNECT request.
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.IP PRU_SHUTDOWN
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.br
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This call is used to indicate no more data will be sent and/or
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received (the \fIaddr\fP parameter indicates the direction of
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the shutdown, as encoded in the \fIsoshutdown\fP system call).
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The protocol may, at its discretion, deallocate any data
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structures related to the shutdown and/or notify a connected peer
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of the shutdown.
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.IP PRU_RCVD
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.br
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This request is made only if the protocol entry in the protocol
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switch table includes the PR_WANTRCVD flag.
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When a user removes data from the receive queue this request
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will be sent to the protocol module. It may be used to trigger
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acknowledgements, refresh windowing information, initiate
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data transfer, etc.
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.IP PRU_SEND
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.br
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Each user request to send data is translated into one or more
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PRU_SEND requests (a protocol may indicate that a single user
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send request must be translated into a single PRU_SEND request by
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specifying the PR_ATOMIC flag in its protocol description).
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The data to be sent is presented to the protocol as a list of
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mbufs and an address is, optionally, supplied in the \fIaddr\fP
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parameter. The protocol is responsible for preserving the data
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in the socket's send queue if it is not able to send it immediately,
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or if it may need it at some later time (e.g. for retransmission).
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.IP PRU_ABORT
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.br
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This request indicates an abnormal termination of service. The
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protocol should delete any existing association(s).
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.IP PRU_CONTROL
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.br
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The ``control'' request is generated when a user performs a
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UNIX \fIioctl\fP system call on a socket (and the ioctl is not
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intercepted by the socket routines). It allows protocol-specific
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operations to be provided outside the scope of the common socket
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interface. The \fIaddr\fP parameter contains a pointer to a static
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kernel data area where relevant information may be obtained or returned.
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The \fIm\fP parameter contains the actual \fIioctl\fP request code
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(note the non-standard calling convention).
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The \fIrights\fP parameter contains a pointer to an \fIifnet\fP structure
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if the \fIioctl\fP operation pertains to a particular network interface.
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.IP PRU_SENSE
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.br
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The ``sense'' request is generated when the user makes an \fIfstat\fP
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system call on a socket; it requests status of the associated socket.
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This currently returns a standard \fIstat\fP structure.
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It typically contains only the
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optimal transfer size for the connection (based on buffer size,
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windowing information and maximum packet size).
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The \fIm\fP parameter contains a pointer
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to a static kernel data area where the status buffer should be placed.
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.IP PRU_RCVOOB
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.br
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Any ``out-of-band'' data presently available is to be returned. An
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mbuf is passed to the protocol module, and the protocol
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should either place
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data in the mbuf or attach new mbufs to the one supplied if there is
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insufficient space in the single mbuf.
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An error may be returned if out-of-band data is not (yet) available
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or has already been consumed.
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The \fIaddr\fP parameter contains any options such as MSG_PEEK
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to examine data without consuming it.
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.IP PRU_SENDOOB
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.br
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Like PRU_SEND, but for out-of-band data.
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.IP PRU_SOCKADDR
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.br
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The local address of the socket is returned, if any is currently
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bound to it. The address (with protocol specific format) is returned
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in the \fIaddr\fP parameter.
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.IP PRU_PEERADDR
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.br
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The address of the peer to which the socket is connected is returned.
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The socket must be in a SS_ISCONNECTED state for this request to
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be made to the protocol. The address format (protocol specific) is
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returned in the \fIaddr\fP parameter.
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.IP PRU_CONNECT2
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.br
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The protocol module is supplied two sockets and requested to
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establish a connection between the two without binding any
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addresses, if possible. This call is used in implementing
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the
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.IR socketpair (2)
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system call.
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.PP
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The following requests are used internally by the protocol modules
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and are never generated by the socket routines. In certain instances,
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they are handed to the \fIpr_usrreq\fP routine solely for convenience
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in tracing a protocol's operation (e.g. PRU_SLOWTIMO).
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.IP PRU_FASTTIMO
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.br
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A ``fast timeout'' has occurred. This request is made when a timeout
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occurs in the protocol's \fIpr_fastimo\fP routine. The \fIaddr\fP
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parameter indicates which timer expired.
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.IP PRU_SLOWTIMO
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.br
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A ``slow timeout'' has occurred. This request is made when a timeout
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occurs in the protocol's \fIpr_slowtimo\fP routine. The \fIaddr\fP
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parameter indicates which timer expired.
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.IP PRU_PROTORCV
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.br
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This request is used in the protocol-protocol interface, not by the
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routines. It requests reception of data destined for the protocol and
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not the user. No protocols currently use this facility.
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.IP PRU_PROTOSEND
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.br
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This request allows a protocol to send data destined for another
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protocol module, not a user. The details of how data is marked
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``addressed to protocol'' instead of ``addressed to user'' are
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left to the protocol modules. No protocols currently use this facility.
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