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137 .IX Title "RAND_bytes 3"
138 .TH RAND_bytes 3 "2009-07-19" "1.0.1n" "OpenSSL"
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144 RAND_bytes, RAND_pseudo_bytes \- generate random data
148 .IX Header "SYNOPSIS"
150 \& #include <openssl/rand.h>
152 \& int RAND_bytes(unsigned char *buf, int num);
154 \& int RAND_pseudo_bytes(unsigned char *buf, int num);
157 .IX Header "DESCRIPTION"
158 \&\fIRAND_bytes()\fR puts \fBnum\fR cryptographically strong pseudo-random bytes
159 into \fBbuf\fR. An error occurs if the \s-1PRNG\s0 has not been seeded with
160 enough randomness to ensure an unpredictable byte sequence.
162 \&\fIRAND_pseudo_bytes()\fR puts \fBnum\fR pseudo-random bytes into \fBbuf\fR.
163 Pseudo-random byte sequences generated by \fIRAND_pseudo_bytes()\fR will be
164 unique if they are of sufficient length, but are not necessarily
165 unpredictable. They can be used for non-cryptographic purposes and for
166 certain purposes in cryptographic protocols, but usually not for key
169 The contents of \fBbuf\fR is mixed into the entropy pool before retrieving
170 the new pseudo-random bytes unless disabled at compile time (see \s-1FAQ\s0).
172 .IX Header "RETURN VALUES"
173 \&\fIRAND_bytes()\fR returns 1 on success, 0 otherwise. The error code can be
174 obtained by \fIERR_get_error\fR\|(3). \fIRAND_pseudo_bytes()\fR returns 1 if the
175 bytes generated are cryptographically strong, 0 otherwise. Both
176 functions return \-1 if they are not supported by the current \s-1RAND\s0
179 .IX Header "SEE ALSO"
180 \&\fIopenssl_rand\fR\|(3), \fIERR_get_error\fR\|(3),
181 \&\fIRAND_add\fR\|(3)
184 \&\fIRAND_bytes()\fR is available in all versions of SSLeay and OpenSSL. It
185 has a return value since OpenSSL 0.9.5. \fIRAND_pseudo_bytes()\fR was added