晋太元中,武陵人捕鱼为业。缘溪行,忘路之远近。忽逢桃花林,夹岸数百步,中无杂树,芳草鲜美,落英缤纷。渔人甚异之,复前行,欲穷其林。 林尽水源,便得一山,山有小口,仿佛若有光。便舍船,从口入。初极狭,才通人。复行数十步,豁然开朗。土地平旷,屋舍俨然,有良田、美池、桑竹之属。阡陌交通,鸡犬相闻。其中往来种作,男女衣着,悉如外人。黄发垂髫,并怡然自乐。 见渔人,乃大惊,问所从来。具答之。便要还家,设酒杀鸡作食。村中闻有此人,咸来问讯。自云先世避秦时乱,率妻子邑人来此绝境,不复出焉,遂与外人间隔。问今是何世,乃不知有汉,无论魏晋。此人一一为具言所闻,皆叹惋。余人各复延至其家,皆出酒食。停数日,辞去。此中人语云:“不足为外人道也。”(间隔 一作:隔绝) 既出,得其船,便扶向路,处处志之。及郡下,诣太守,说如此。太守即遣人随其往,寻向所志,遂迷,不复得路。 南阳刘子骥,高尚士也,闻之,欣然规往。未果,寻病终。后遂无问津者。
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| Current File : //opt/cpanel/ea-openssl/etc/pki/tls/man/man3/RAND_event.3 |
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.\" ========================================================================
.\"
.IX Title "RAND_add 3"
.TH RAND_add 3 "2019-12-20" "1.0.2u" "OpenSSL"
.\" For nroff, turn off justification. Always turn off hyphenation; it makes
.\" way too many mistakes in technical documents.
.if n .ad l
.nh
.SH "NAME"
RAND_add, RAND_seed, RAND_status, RAND_event, RAND_screen \- add
entropy to the PRNG
.SH "SYNOPSIS"
.IX Header "SYNOPSIS"
.Vb 1
\& #include <openssl/rand.h>
\&
\& void RAND_seed(const void *buf, int num);
\&
\& void RAND_add(const void *buf, int num, double entropy);
\&
\& int RAND_status(void);
\&
\& int RAND_event(UINT iMsg, WPARAM wParam, LPARAM lParam);
\& void RAND_screen(void);
.Ve
.SH "DESCRIPTION"
.IX Header "DESCRIPTION"
\&\fBRAND_add()\fR mixes the \fBnum\fR bytes at \fBbuf\fR into the \s-1PRNG\s0 state. Thus,
if the data at \fBbuf\fR are unpredictable to an adversary, this
increases the uncertainty about the state and makes the \s-1PRNG\s0 output
less predictable. Suitable input comes from user interaction (random
key presses, mouse movements) and certain hardware events. The
\&\fBentropy\fR argument is (the lower bound of) an estimate of how much
randomness is contained in \fBbuf\fR, measured in bytes. Details about
sources of randomness and how to estimate their entropy can be found
in the literature, e.g. \s-1RFC 1750.\s0
.PP
\&\fBRAND_add()\fR may be called with sensitive data such as user entered
passwords. The seed values cannot be recovered from the \s-1PRNG\s0 output.
.PP
OpenSSL makes sure that the \s-1PRNG\s0 state is unique for each thread. On
systems that provide \f(CW\*(C`/dev/urandom\*(C'\fR, the randomness device is used
to seed the \s-1PRNG\s0 transparently. However, on all other systems, the
application is responsible for seeding the \s-1PRNG\s0 by calling \fBRAND_add()\fR,
\&\fBRAND_egd\fR\|(3)
or \fBRAND_load_file\fR\|(3).
.PP
\&\fBRAND_seed()\fR is equivalent to \fBRAND_add()\fR when \fBnum == entropy\fR.
.PP
\&\fBRAND_event()\fR collects the entropy from Windows events such as mouse
movements and other user interaction. It should be called with the
\&\fBiMsg\fR, \fBwParam\fR and \fBlParam\fR arguments of \fIall\fR messages sent to
the window procedure. It will estimate the entropy contained in the
event message (if any), and add it to the \s-1PRNG.\s0 The program can then
process the messages as usual.
.PP
The \fBRAND_screen()\fR function is available for the convenience of Windows
programmers. It adds the current contents of the screen to the \s-1PRNG.\s0
For applications that can catch Windows events, seeding the \s-1PRNG\s0 by
calling \fBRAND_event()\fR is a significantly better source of
randomness. It should be noted that both methods cannot be used on
servers that run without user interaction.
.SH "RETURN VALUES"
.IX Header "RETURN VALUES"
\&\fBRAND_status()\fR and \fBRAND_event()\fR return 1 if the \s-1PRNG\s0 has been seeded
with enough data, 0 otherwise.
.PP
The other functions do not return values.
.SH "SEE ALSO"
.IX Header "SEE ALSO"
\&\fBrand\fR\|(3), \fBRAND_egd\fR\|(3),
\&\fBRAND_load_file\fR\|(3), \fBRAND_cleanup\fR\|(3)
.SH "HISTORY"
.IX Header "HISTORY"
\&\fBRAND_seed()\fR and \fBRAND_screen()\fR are available in all versions of SSLeay
and OpenSSL. \fBRAND_add()\fR and \fBRAND_status()\fR have been added in OpenSSL
0.9.5, \fBRAND_event()\fR in OpenSSL 0.9.5a.
|