157 lines
3.4 KiB
Groff
157 lines
3.4 KiB
Groff
.\" from: @(#)rpcgen.1 2.2 88/08/02 4.0 RPCSRC
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.\" $Id: rpcgen.1,v 1.4 1993/08/01 07:29:24 mycroft Exp $
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.\"
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.Dd January 18, 1988
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.Dt RPCGEN 1
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.Os
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.Sh NAME
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.Nm rpcgen
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.Nd RPC protocol compiler
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.Sh SYNOPSIS
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.Nm rpcgen
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.Ar infile
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.Nm rpcgen
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.Fl c Li |
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.Fl h Li |
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.Fl l Li |
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.Fl m
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.Op Fl o Ar outfile
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.Op Ar infile
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.Nm rpcgen
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.Fl s Ar transport
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.Op Fl o Ar outfile
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.Op Ar infile
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.Sh DESCRIPTION
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.Nm rpcgen
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is a tool that generates C code to implement an
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.Tn RPC
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protocol. The input to
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.Nm rpcgen
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is a language similar to C known as
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.Tn RPC
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Language (Remote Procedure Call Language). Information about the
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syntax of
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.Tn RPC
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Language is available in the
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.Rs
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.%T "rpcgen Programming Guide"
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.Re
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.Pp
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.Nm rpcgen
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is normally used as in the first synopsis where it takes an input file
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and generates four output files. If the
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.Ar infile
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is named
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.Pa proto.x ,
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then
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.Nm rpcgen
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will generate a header file in
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.Pa proto.h ,
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.Tn XDR
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routines in
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.Pa proto_xdr.c ,
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server-side stubs in
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.Pa proto_svc.c ,
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and client-side stubs in
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.Pa proto_clnt.c .
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.Pp
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The other synopses shown above are used when one does not want to
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generate all the output files, but only a particular one.
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.\" Their usage is described in the
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.\" .Sx USAGE
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.\" section below.
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.Pp
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The C-preprocessor,
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.Xr cpp 1 ,
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is run on all input files before they are actually
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interpreted by
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.Nm rpcgen ,
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so all the
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.Xr cpp
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directives are legal within an
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.Nm rpcgen
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input file. For each type of output file,
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.Nm rpcgen
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defines a special
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.Xr cpp
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symbol for use by the
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.Nm rpcgen
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programmer:
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.Pp
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.Bl -tag -width RPC_CLNT -compact
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.It Dv RPC_HDR
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defined when compiling into header files
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.It Dv RPC_XDR
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defined when compiling into
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.Tn XDR
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routines
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.It Dv RPC_SVC
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defined when compiling into server-side stubs
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.It Dv RPC_CLNT
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defined when compiling into client-side stubs
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.El
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.Pp
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In addition,
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.Nm rpcgen
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does a little preprocessing of its own. Any line beginning with
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.Sq %
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is passed directly into the output file, uninterpreted by
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.Nm rpcgen .
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.Pp
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You can customize some of your
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.Tn XDR
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routines by leaving those data types undefined. For every data type
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that is undefined,
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.Nm rpcgen
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will assume that there exists a routine with the name
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.Tn xdr_
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prepended to the name of the undefined type.
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.Sh OPTIONS
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.Bl -tag -width indent
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.It Fl c
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Compile into
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.Tn XDR
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routines.
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.It Fl h
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Compile into C data-definitions (a header file).
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.It Fl l
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Compile into client-side stubs.
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.It Fl m
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Compile into server-side stubs, but do not generate a
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.Fn main
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routine. This option is useful for doing callback-routines and for
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people who need to write their own
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.Fn main
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routine to do initialization.
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.It Fl o Ar outfile
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Specify the name of the output file. If none is specified, standard
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output is used (
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.Fl c ,
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.Fl h ,
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.Fl l
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and
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.Fl s
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modes only).
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.It Fl s Ar transport
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Compile into server-side stubs, using the the given transport. The
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supported transports are
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.Tn udp
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and
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.Tn tcp .
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This option may be invoked more than once so as to compile a server
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that serves multiple transports.
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.El
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.Sh SEE ALSO
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.Xr cpp 1
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.Rs
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.%T "rpcgen Programming Guide"
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.Re
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.Sh BUGS
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Nesting is not supported. As a work-around, structures can be
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declared at top-level, and their name used inside other structures in
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order to achieve the same effect.
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.Pp
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Name clashes can occur when using program definitions, since the
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apparent scoping does not really apply. Most of these can be avoided
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by giving unique names for programs, versions, procedures and types.
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