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.\" $OpenBSD: arc4random.3,v 1.34 2014/07/19 16:11:16 naddy Exp $
.\"
.\" Copyright 1997 Niels Provos <provos@physnet.uni-hamburg.de>
.\" All rights reserved.
.\"
.\" Redistribution and use in source and binary forms, with or without
.\" modification, are permitted provided that the following conditions
.\" are met:
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.\" 2. Redistributions in binary form must reproduce the above copyright
.\" notice, this list of conditions and the following disclaimer in the
.\" documentation and/or other materials provided with the distribution.
.\" 3. All advertising materials mentioning features or use of this software
.\" must display the following acknowledgement:
.\" This product includes software developed by Niels Provos.
.\" 4. The name of the author may not be used to endorse or promote products
.\" derived from this software without specific prior written permission.
.\"
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.\" Manual page, using -mandoc macros
.\"
.Dd $Mdocdate: July 19 2014 $
.Dt ARC4RANDOM 3bsd
.Os
.Sh NAME
.Nm arc4random ,
.Nm arc4random_buf ,
.Nm arc4random_uniform ,
.Nm arc4random_stir ,
.Nm arc4random_addrandom
.Nd arc4 random number generator
.Sh LIBRARY
.ds str-Lb-libbsd Utility functions from BSD systems (libbsd, \-lbsd)
.ds doc-str-Lb-libbsd \*[str-Lb-libbsd]
.Lb libbsd
.Sh SYNOPSIS
.In stdlib.h
(See
.Xr libbsd 7
for include usage.)
.Ft uint32_t
.Fn arc4random "void"
.Ft void
.Fn arc4random_buf "void *buf" "size_t nbytes"
.Ft uint32_t
.Fn arc4random_uniform "uint32_t upper_bound"
.Ft void
.Fn arc4random_stir "void"
.Ft void
.Fn arc4random_addrandom "unsigned char *dat" "int datlen"
.Sh DESCRIPTION
This family of functions provides higher quality data than those
described in
.Xr rand 3 ,
.Xr random 3 ,
and
.Xr rand48 3 .
.Pp
Use of these functions is encouraged for almost all random number
consumption because the other interfaces are deficient in either
quality, portability, standardization, or availability.
These functions can be called in almost all coding environments,
including
.Xr pthreads 3
and
.Xr chroot 2 .
.Pp
High quality 32-bit pseudo-random numbers are generated very quickly.
On each call, a cryptographic pseudo-random number generator is used
to generate a new result.
One data pool is used for all consumers in a process, so that consumption
under program flow can act as additional stirring.
The subsystem is re-seeded from the kernel random number subsystem using
.Xr getentropy 2
on a regular basis, and also upon
.Xr fork 2 .
.Pp
The
.Fn arc4random
function returns a single 32-bit value.
.Pp
The
.Fn arc4random_buf
function fills the region
.Fa buf
of length
.Fa nbytes
with random data.
.Pp
.Fn arc4random_uniform
will return a single 32-bit value, uniformly distributed but less than
.Fa upper_bound .
This is recommended over constructions like
.Dq Li arc4random() % upper_bound
as it avoids "modulo bias" when the upper bound is not a power of two.
In the worst case, this function may consume multiple iterations
to ensure uniformity; see the source code to understand the problem
and solution.
.Pp
The
.Fn arc4random_stir
function reads data from
.Xr getentropy 2
and uses it to re-seed the subsystem via
.Fn arc4random_addrandom .
.Pp
There is no need to call
.Fn arc4random_stir
before using
.Fn arc4random
functions family, since
they automatically initialize themselves.
.Sh RETURN VALUES
These functions are always successful, and no return value is
reserved to indicate an error.
.Sh SEE ALSO
.Xr rand 3 ,
.Xr rand48 3 ,
.Xr random 3
.Sh HISTORY
These functions first appeared in
.Ox 2.1 ,
.Fx 3.0 ,
.Nx 1.6 ,
and
.Dx 1.0 .
.Pp
The original version of this random number generator used the
RC4 (also known as ARC4) algorithm.
In
.Ox 5.5
it was replaced with the ChaCha20 cipher, and it may be replaced
again in the future as cryptographic techniques advance.
A good mnemonic is
.Dq A Replacement Call for Random .