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824 lines
14 KiB
Groff
824 lines
14 KiB
Groff
.\" @(#)xdr.3n 2.2 88/08/03 4.0 RPCSRC; from 1.16 88/03/14 SMI
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.TH XDR 3N "16 February 1988"
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.SH NAME
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xdr \- library routines for external data representation
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.SH SYNOPSIS AND DESCRIPTION
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.LP
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These routines allow C programmers to describe
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arbitrary data structures in a machine-independent fashion.
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Data for remote procedure calls are transmitted using these
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routines.
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.LP
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.ft B
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.nf
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.sp .5
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xdr_array(xdrs, arrp, sizep, maxsize, elsize, elproc)
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\s-1XDR\s0 *xdrs;
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char **arrp;
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u_int *sizep, maxsize, elsize;
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xdrproc_t elproc;
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.fi
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.ft R
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.IP
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A filter primitive that translates between variable-length
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arrays
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and their corresponding external representations. The
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parameter
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.I arrp
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is the address of the pointer to the array, while
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.I sizep
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is the address of the element count of the array;
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this element count cannot exceed
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.IR maxsize .
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The parameter
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.I elsize
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is the
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.I sizeof
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each of the array's elements, and
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.I elproc
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is an
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.SM XDR
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filter that translates between
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the array elements' C form, and their external
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representation.
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This routine returns one if it succeeds, zero otherwise.
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.br
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.if t .ne 8
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.LP
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.ft B
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.nf
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.sp .5
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xdr_bool(xdrs, bp)
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\s-1XDR\s0 *xdrs;
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bool_t *bp;
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.fi
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.ft R
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.IP
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A filter primitive that translates between booleans (C
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integers)
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and their external representations. When encoding data, this
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filter produces values of either one or zero.
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This routine returns one if it succeeds, zero otherwise.
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.br
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.if t .ne 10
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.LP
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.ft B
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.nf
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.sp .5
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xdr_bytes(xdrs, sp, sizep, maxsize)
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\s-1XDR\s0 *xdrs;
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char **sp;
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u_int *sizep, maxsize;
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.fi
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.ft R
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.IP
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A filter primitive that translates between counted byte
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strings and their external representations.
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The parameter
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.I sp
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is the address of the string pointer. The length of the
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string is located at address
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.IR sizep ;
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strings cannot be longer than
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.IR maxsize .
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This routine returns one if it succeeds, zero otherwise.
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.br
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.if t .ne 7
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.LP
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.ft B
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.nf
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.sp .5
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xdr_char(xdrs, cp)
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\s-1XDR\s0 *xdrs;
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char *cp;
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.fi
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.ft R
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.IP
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A filter primitive that translates between C characters
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and their external representations.
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This routine returns one if it succeeds, zero otherwise.
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Note: encoded characters are not packed, and occupy 4 bytes
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each. For arrays of characters, it is worthwhile to
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consider
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.BR xdr_bytes(\|) ,
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.B xdr_opaque(\|)
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or
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.BR xdr_string(\|) .
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.br
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.if t .ne 8
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.LP
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.ft B
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.nf
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.sp .5
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void
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xdr_destroy(xdrs)
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\s-1XDR\s0 *xdrs;
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.fi
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.ft R
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.IP
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A macro that invokes the destroy routine associated with the
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.SM XDR
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stream,
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.IR xdrs .
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Destruction usually involves freeing private data structures
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associated with the stream. Using
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.I xdrs
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after invoking
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.B xdr_destroy(\|)
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is undefined.
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.br
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.if t .ne 7
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.LP
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.ft B
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.nf
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.sp .5
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xdr_double(xdrs, dp)
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\s-1XDR\s0 *xdrs;
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double *dp;
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.fi
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.ft R
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.IP
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A filter primitive that translates between C
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.B double
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precision numbers and their external representations.
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This routine returns one if it succeeds, zero otherwise.
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.br
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.if t .ne 7
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.LP
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.ft B
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.nf
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.sp .5
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xdr_enum(xdrs, ep)
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\s-1XDR\s0 *xdrs;
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enum_t *ep;
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.fi
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.ft R
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.IP
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A filter primitive that translates between C
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.BR enum s
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(actually integers) and their external representations.
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This routine returns one if it succeeds, zero otherwise.
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.br
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.if t .ne 8
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.LP
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.ft B
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.nf
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.sp .5
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xdr_float(xdrs, fp)
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\s-1XDR\s0 *xdrs;
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float *fp;
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.fi
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.ft R
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.IP
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A filter primitive that translates between C
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.BR float s
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and their external representations.
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This routine returns one if it succeeds, zero otherwise.
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.br
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.if t .ne 9
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.LP
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.ft B
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.nf
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.sp .5
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void
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xdr_free(proc, objp)
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xdrproc_t proc;
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char *objp;
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.fi
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.ft R
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.IP
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Generic freeing routine. The first argument is the
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.SM XDR
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routine for the object being freed. The second argument
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is a pointer to the object itself. Note: the pointer passed
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to this routine is
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.I not
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freed, but what it points to
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.I is
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freed (recursively).
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.br
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.if t .ne 8
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.LP
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.ft B
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.nf
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.sp .5
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u_int
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xdr_getpos(xdrs)
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\s-1XDR\s0 *xdrs;
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.fi
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.ft R
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.IP
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A macro that invokes the get-position routine
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associated with the
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.SM XDR
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stream,
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.IR xdrs .
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The routine returns an unsigned integer,
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which indicates the position of the
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.SM XDR
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byte stream.
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A desirable feature of
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.SM XDR
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streams is that simple arithmetic works with this number,
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although the
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.SM XDR
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stream instances need not guarantee this.
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.br
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.if t .ne 4
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.LP
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.ft B
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.nf
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.sp .5
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.br
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long *
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xdr_inline(xdrs, len)
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\s-1XDR\s0 *xdrs;
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int len;
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.fi
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.ft R
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.IP
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A macro that invokes the in-line routine associated with the
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.SM XDR
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stream,
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.IR xdrs .
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The routine returns a pointer
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to a contiguous piece of the stream's buffer;
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.I len
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is the byte length of the desired buffer.
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Note: pointer is cast to
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.BR "long *" .
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.IP
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Warning:
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.B xdr_inline(\|)
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may return
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.SM NULL
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(0)
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if it cannot allocate a contiguous piece of a buffer.
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Therefore the behavior may vary among stream instances;
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it exists for the sake of efficiency.
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.br
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.if t .ne 7
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.LP
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.ft B
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.nf
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.sp .5
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xdr_int(xdrs, ip)
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\s-1XDR\s0 *xdrs;
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int *ip;
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.fi
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.ft R
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.IP
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A filter primitive that translates between C integers
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and their external representations.
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This routine returns one if it succeeds, zero otherwise.
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.br
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.if t .ne 7
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.LP
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.ft B
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.nf
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.sp .5
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xdr_long(xdrs, lp)
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\s-1XDR\s0 *xdrs;
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long *lp;
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.fi
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.ft R
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.IP
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A filter primitive that translates between C
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.B long
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integers and their external representations.
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This routine returns one if it succeeds, zero otherwise.
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.br
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.if t .ne 12
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.LP
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.ft B
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.nf
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.sp .5
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void
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xdrmem_create(xdrs, addr, size, op)
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\s-1XDR\s0 *xdrs;
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char *addr;
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u_int size;
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enum xdr_op op;
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.fi
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.ft R
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.IP
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This routine initializes the
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.SM XDR
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stream object pointed to by
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.IR xdrs .
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The stream's data is written to, or read from,
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a chunk of memory at location
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.I addr
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whose length is no more than
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.I size
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bytes long. The
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.I op
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determines the direction of the
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.SM XDR
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stream
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(either
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.BR \s-1XDR_ENCODE\s0 ,
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.BR \s-1XDR_DECODE\s0 ,
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or
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.BR \s-1XDR_FREE\s0 ).
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.br
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.if t .ne 10
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.LP
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.ft B
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.nf
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.sp .5
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xdr_opaque(xdrs, cp, cnt)
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\s-1XDR\s0 *xdrs;
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char *cp;
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u_int cnt;
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.fi
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.ft R
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.IP
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A filter primitive that translates between fixed size opaque
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data
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and its external representation.
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The parameter
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.I cp
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is the address of the opaque object, and
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.I cnt
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is its size in bytes.
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This routine returns one if it succeeds, zero otherwise.
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.br
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.if t .ne 10
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.LP
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.ft B
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.nf
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.sp .5
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xdr_pointer(xdrs, objpp, objsize, xdrobj)
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\s-1XDR\s0 *xdrs;
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char **objpp;
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u_int objsize;
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xdrproc_t xdrobj;
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.fi
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.ft R
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.IP
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Like
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.B xdr_reference(\|)
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execpt that it serializes
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.SM NULL
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pointers, whereas
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.B xdr_reference(\|)
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does not. Thus,
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.B xdr_pointer(\|)
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can represent
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recursive data structures, such as binary trees or
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linked lists.
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.br
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.if t .ne 15
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.LP
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.ft B
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.nf
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.sp .5
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void
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xdrrec_create(xdrs, sendsize, recvsize, handle, readit, writeit)
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\s-1XDR\s0 *xdrs;
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u_int sendsize, recvsize;
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char *handle;
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int (*readit) (\|), (*writeit) (\|);
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.fi
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.ft R
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.IP
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This routine initializes the
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.SM XDR
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stream object pointed to by
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.IR xdrs .
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The stream's data is written to a buffer of size
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.IR sendsize ;
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a value of zero indicates the system should use a suitable
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default. The stream's data is read from a buffer of size
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.IR recvsize ;
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it too can be set to a suitable default by passing a zero
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value.
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When a stream's output buffer is full,
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.I writeit
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is called. Similarly, when a stream's input buffer is empty,
|
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.I readit
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is called. The behavior of these two routines is similar to
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the
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system calls
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.B read
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and
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.BR write ,
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except that
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.I handle
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is passed to the former routines as the first parameter.
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Note: the
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.SM XDR
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stream's
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.I op
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field must be set by the caller.
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.IP
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Warning: this
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.SM XDR
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stream implements an intermediate record stream.
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Therefore there are additional bytes in the stream
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to provide record boundary information.
|
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.br
|
|
.if t .ne 9
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.LP
|
|
.ft B
|
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.nf
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.sp .5
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xdrrec_endofrecord(xdrs, sendnow)
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\s-1XDR\s0 *xdrs;
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int sendnow;
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.fi
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.ft R
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.IP
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This routine can be invoked only on
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streams created by
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.BR xdrrec_create(\|) .
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The data in the output buffer is marked as a completed
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record,
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and the output buffer is optionally written out if
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.I sendnow
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is non-zero. This routine returns one if it succeeds, zero
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otherwise.
|
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.br
|
|
.if t .ne 8
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.LP
|
|
.ft B
|
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.nf
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|
.sp .5
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xdrrec_eof(xdrs)
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\s-1XDR\s0 *xdrs;
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int empty;
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.fi
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.ft R
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.IP
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This routine can be invoked only on
|
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streams created by
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.BR xdrrec_create(\|) .
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After consuming the rest of the current record in the stream,
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this routine returns one if the stream has no more input,
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zero otherwise.
|
|
.br
|
|
.if t .ne 3
|
|
.LP
|
|
.ft B
|
|
.nf
|
|
.sp .5
|
|
xdrrec_skiprecord(xdrs)
|
|
\s-1XDR\s0 *xdrs;
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.fi
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|
.ft R
|
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.IP
|
|
This routine can be invoked only on
|
|
streams created by
|
|
.BR xdrrec_create(\|) .
|
|
It tells the
|
|
.SM XDR
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|
implementation that the rest of the current record
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|
in the stream's input buffer should be discarded.
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|
This routine returns one if it succeeds, zero otherwise.
|
|
.br
|
|
.if t .ne 11
|
|
.LP
|
|
.ft B
|
|
.nf
|
|
.sp .5
|
|
xdr_reference(xdrs, pp, size, proc)
|
|
\s-1XDR\s0 *xdrs;
|
|
char **pp;
|
|
u_int size;
|
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xdrproc_t proc;
|
|
.fi
|
|
.ft R
|
|
.IP
|
|
A primitive that provides pointer chasing within structures.
|
|
The parameter
|
|
.I pp
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|
is the address of the pointer;
|
|
.I size
|
|
is the
|
|
.I sizeof
|
|
the structure that
|
|
.I *pp
|
|
points to; and
|
|
.I proc
|
|
is an
|
|
.SM XDR
|
|
procedure that filters the structure
|
|
between its C form and its external representation.
|
|
This routine returns one if it succeeds, zero otherwise.
|
|
.IP
|
|
Warning: this routine does not understand
|
|
.SM NULL
|
|
pointers. Use
|
|
.B xdr_pointer(\|)
|
|
instead.
|
|
.br
|
|
.if t .ne 10
|
|
.LP
|
|
.ft B
|
|
.nf
|
|
.sp .5
|
|
xdr_setpos(xdrs, pos)
|
|
\s-1XDR\s0 *xdrs;
|
|
u_int pos;
|
|
.fi
|
|
.ft R
|
|
.IP
|
|
A macro that invokes the set position routine associated with
|
|
the
|
|
.SM XDR
|
|
stream
|
|
.IR xdrs .
|
|
The parameter
|
|
.I pos
|
|
is a position value obtained from
|
|
.BR xdr_getpos(\|) .
|
|
This routine returns one if the
|
|
.SM XDR
|
|
stream could be repositioned,
|
|
and zero otherwise.
|
|
.IP
|
|
Warning: it is difficult to reposition some types of
|
|
.SM XDR
|
|
streams, so this routine may fail with one
|
|
type of stream and succeed with another.
|
|
.br
|
|
.if t .ne 8
|
|
.LP
|
|
.ft B
|
|
.nf
|
|
.sp .5
|
|
xdr_short(xdrs, sp)
|
|
\s-1XDR\s0 *xdrs;
|
|
short *sp;
|
|
.fi
|
|
.ft R
|
|
.IP
|
|
A filter primitive that translates between C
|
|
.B short
|
|
integers and their external representations.
|
|
This routine returns one if it succeeds, zero otherwise.
|
|
.br
|
|
.if t .ne 10
|
|
.LP
|
|
.ft B
|
|
.nf
|
|
.sp .5
|
|
void
|
|
xdrstdio_create(xdrs, file, op)
|
|
\s-1XDR\s0 *xdrs;
|
|
\s-1FILE\s0 *file;
|
|
enum xdr_op op;
|
|
.fi
|
|
.ft R
|
|
.IP
|
|
This routine initializes the
|
|
.SM XDR
|
|
stream object pointed to by
|
|
.IR xdrs .
|
|
The
|
|
.SM XDR
|
|
stream data is written to, or read from, the Standard
|
|
.B I/O
|
|
stream
|
|
.IR file .
|
|
The parameter
|
|
.I op
|
|
determines the direction of the
|
|
.SM XDR
|
|
stream (either
|
|
.BR \s-1XDR_ENCODE\s0 ,
|
|
.BR \s-1XDR_DECODE\s0 ,
|
|
or
|
|
.BR \s-1XDR_FREE\s0 ).
|
|
.IP
|
|
Warning: the destroy routine associated with such
|
|
.SM XDR
|
|
streams calls
|
|
.B fflush(\|)
|
|
on the
|
|
.I file
|
|
stream, but never
|
|
.BR fclose(\|) .
|
|
.br
|
|
.if t .ne 9
|
|
.LP
|
|
.ft B
|
|
.nf
|
|
.sp .5
|
|
xdr_string(xdrs, sp, maxsize)
|
|
\s-1XDR\s0
|
|
*xdrs;
|
|
char **sp;
|
|
u_int maxsize;
|
|
.fi
|
|
.ft R
|
|
.IP
|
|
A filter primitive that translates between C strings and
|
|
their
|
|
corresponding external representations.
|
|
Strings cannot be longer than
|
|
.IR maxsize .
|
|
Note:
|
|
.I sp
|
|
is the address of the string's pointer.
|
|
This routine returns one if it succeeds, zero otherwise.
|
|
.br
|
|
.if t .ne 8
|
|
.LP
|
|
.ft B
|
|
.nf
|
|
.sp .5
|
|
xdr_u_char(xdrs, ucp)
|
|
\s-1XDR\s0 *xdrs;
|
|
unsigned char *ucp;
|
|
.fi
|
|
.ft R
|
|
.IP
|
|
A filter primitive that translates between
|
|
.B unsigned
|
|
C characters and their external representations.
|
|
This routine returns one if it succeeds, zero otherwise.
|
|
.br
|
|
.if t .ne 9
|
|
.LP
|
|
.ft B
|
|
.nf
|
|
.sp .5
|
|
xdr_u_int(xdrs, up)
|
|
\s-1XDR\s0 *xdrs;
|
|
unsigned *up;
|
|
.fi
|
|
.ft R
|
|
.IP
|
|
A filter primitive that translates between C
|
|
.B unsigned
|
|
integers and their external representations.
|
|
This routine returns one if it succeeds, zero otherwise.
|
|
.br
|
|
.if t .ne 7
|
|
.LP
|
|
.ft B
|
|
.nf
|
|
.sp .5
|
|
xdr_u_long(xdrs, ulp)
|
|
\s-1XDR\s0 *xdrs;
|
|
unsigned long *ulp;
|
|
.fi
|
|
.ft R
|
|
.IP
|
|
A filter primitive that translates between C
|
|
.B "unsigned long"
|
|
integers and their external representations.
|
|
This routine returns one if it succeeds, zero otherwise.
|
|
.br
|
|
.if t .ne 7
|
|
.LP
|
|
.ft B
|
|
.nf
|
|
.sp .5
|
|
xdr_u_short(xdrs, usp)
|
|
\s-1XDR\s0 *xdrs;
|
|
unsigned short *usp;
|
|
.fi
|
|
.ft R
|
|
.IP
|
|
A filter primitive that translates between C
|
|
.B "unsigned short"
|
|
integers and their external representations.
|
|
This routine returns one if it succeeds, zero otherwise.
|
|
.br
|
|
.if t .ne 16
|
|
.LP
|
|
.ft B
|
|
.nf
|
|
.sp .5
|
|
xdr_union(xdrs, dscmp, unp, choices, dfault)
|
|
\s-1XDR\s0 *xdrs;
|
|
int *dscmp;
|
|
char *unp;
|
|
struct xdr_discrim *choices;
|
|
bool_t (*defaultarm) (\|); /* may equal \s-1NULL\s0 */
|
|
.fi
|
|
.ft R
|
|
.IP
|
|
A filter primitive that translates between a discriminated C
|
|
.B union
|
|
and its corresponding external representation. It first
|
|
translates the discriminant of the union located at
|
|
.IR dscmp .
|
|
This discriminant is always an
|
|
.BR enum_t .
|
|
Next the union located at
|
|
.I unp
|
|
is translated. The parameter
|
|
.I choices
|
|
is a pointer to an array of
|
|
.B xdr_discrim(\|)
|
|
structures. Each structure contains an ordered pair of
|
|
.RI [ value , proc ].
|
|
If the union's discriminant is equal to the associated
|
|
.IR value ,
|
|
then the
|
|
.I proc
|
|
is called to translate the union. The end of the
|
|
.B xdr_discrim(\|)
|
|
structure array is denoted by a routine of value
|
|
.SM NULL\s0.
|
|
If the discriminant is not found in the
|
|
.I choices
|
|
array, then the
|
|
.I defaultarm
|
|
procedure is called (if it is not
|
|
.SM NULL\s0).
|
|
Returns one if it succeeds, zero otherwise.
|
|
.br
|
|
.if t .ne 6
|
|
.LP
|
|
.ft B
|
|
.nf
|
|
.sp .5
|
|
xdr_vector(xdrs, arrp, size, elsize, elproc)
|
|
\s-1XDR\s0 *xdrs;
|
|
char *arrp;
|
|
u_int size, elsize;
|
|
xdrproc_t elproc;
|
|
.fi
|
|
.ft R
|
|
.IP
|
|
A filter primitive that translates between fixed-length
|
|
arrays
|
|
and their corresponding external representations. The
|
|
parameter
|
|
.I arrp
|
|
is the address of the pointer to the array, while
|
|
.I size
|
|
is is the element count of the array. The parameter
|
|
.I elsize
|
|
is the
|
|
.I sizeof
|
|
each of the array's elements, and
|
|
.I elproc
|
|
is an
|
|
.SM XDR
|
|
filter that translates between
|
|
the array elements' C form, and their external
|
|
representation.
|
|
This routine returns one if it succeeds, zero otherwise.
|
|
.br
|
|
.if t .ne 5
|
|
.LP
|
|
.ft B
|
|
.nf
|
|
.sp .5
|
|
xdr_void(\|)
|
|
.fi
|
|
.ft R
|
|
.IP
|
|
This routine always returns one.
|
|
It may be passed to
|
|
.SM RPC
|
|
routines that require a function parameter,
|
|
where nothing is to be done.
|
|
.br
|
|
.if t .ne 10
|
|
.LP
|
|
.ft B
|
|
.nf
|
|
.sp .5
|
|
xdr_wrapstring(xdrs, sp)
|
|
\s-1XDR\s0 *xdrs;
|
|
char **sp;
|
|
.fi
|
|
.ft R
|
|
.IP
|
|
A primitive that calls
|
|
.B "xdr_string(xdrs, sp,\s-1MAXUN.UNSIGNED\s0 );"
|
|
where
|
|
.B
|
|
.SM MAXUN.UNSIGNED
|
|
is the maximum value of an unsigned integer.
|
|
.B xdr_wrapstring(\|)
|
|
is handy because the
|
|
.SM RPC
|
|
package passes a maximum of two
|
|
.SM XDR
|
|
routines as parameters, and
|
|
.BR xdr_string(\|) ,
|
|
one of the most frequently used primitives, requires three.
|
|
Returns one if it succeeds, zero otherwise.
|
|
.SH SEE ALSO
|
|
.BR rpc (3N)
|
|
.LP
|
|
The following manuals:
|
|
.RS
|
|
.ft I
|
|
eXternal Data Representation Standard: Protocol Specification
|
|
.br
|
|
eXternal Data Representation: Sun Technical Notes
|
|
.ft R
|
|
.br
|
|
.IR "\s-1XDR\s0: External Data Representation Standard" ,
|
|
.SM RFC1014, Sun Microsystems, Inc.,
|
|
.SM USC-ISI\s0.
|