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.IX Title "ASN1_TIME_SET 3"
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.TH ASN1_TIME_SET 3 "2020-03-02" "1.1.1e-dev" "OpenSSL"
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. \" 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"
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ASN1_TIME_set, ASN1_UTCTIME_set, ASN1_GENERALIZEDTIME_set, ASN1_TIME_adj, ASN1_UTCTIME_adj, ASN1_GENERALIZEDTIME_adj, ASN1_TIME_check, ASN1_UTCTIME_check, ASN1_GENERALIZEDTIME_check, ASN1_TIME_set_string, ASN1_UTCTIME_set_string, ASN1_GENERALIZEDTIME_set_string, ASN1_TIME_set_string_X509, ASN1_TIME_normalize, ASN1_TIME_to_tm, ASN1_TIME_print, ASN1_UTCTIME_print, ASN1_GENERALIZEDTIME_print, ASN1_TIME_diff, ASN1_TIME_cmp_time_t, ASN1_UTCTIME_cmp_time_t, ASN1_TIME_compare, ASN1_TIME_to_generalizedtime \- ASN.1 Time functions
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.SH "SYNOPSIS"
.IX Header "SYNOPSIS"
.Vb 4
\& ASN1_TIME *ASN1_TIME_set(ASN1_TIME *s, time_t t);
\& ASN1_UTCTIME *ASN1_UTCTIME_set(ASN1_UTCTIME *s, time_t t);
\& ASN1_GENERALIZEDTIME *ASN1_GENERALIZEDTIME_set(ASN1_GENERALIZEDTIME *s,
\& time_t t);
\&
\& ASN1_TIME *ASN1_TIME_adj(ASN1_TIME *s, time_t t, int offset_day,
\& long offset_sec);
\& ASN1_UTCTIME *ASN1_UTCTIME_adj(ASN1_UTCTIME *s, time_t t,
\& int offset_day, long offset_sec);
\& ASN1_GENERALIZEDTIME *ASN1_GENERALIZEDTIME_adj(ASN1_GENERALIZEDTIME *s,
\& time_t t, int offset_day,
\& long offset_sec);
\&
\& int ASN1_TIME_set_string(ASN1_TIME *s, const char *str);
\& int ASN1_TIME_set_string_X509(ASN1_TIME *s, const char *str);
\& int ASN1_UTCTIME_set_string(ASN1_UTCTIME *s, const char *str);
\& int ASN1_GENERALIZEDTIME_set_string(ASN1_GENERALIZEDTIME *s,
\& const char *str);
\&
\& int ASN1_TIME_normalize(ASN1_TIME *s);
\&
\& int ASN1_TIME_check(const ASN1_TIME *t);
\& int ASN1_UTCTIME_check(const ASN1_UTCTIME *t);
\& int ASN1_GENERALIZEDTIME_check(const ASN1_GENERALIZEDTIME *t);
\&
\& int ASN1_TIME_print(BIO *b, const ASN1_TIME *s);
\& int ASN1_UTCTIME_print(BIO *b, const ASN1_UTCTIME *s);
\& int ASN1_GENERALIZEDTIME_print(BIO *b, const ASN1_GENERALIZEDTIME *s);
\&
\& int ASN1_TIME_to_tm(const ASN1_TIME *s, struct tm *tm);
\& int ASN1_TIME_diff(int *pday, int *psec, const ASN1_TIME *from,
\& const ASN1_TIME *to);
\&
\& int ASN1_TIME_cmp_time_t(const ASN1_TIME *s, time_t t);
\& int ASN1_UTCTIME_cmp_time_t(const ASN1_UTCTIME *s, time_t t);
\&
\& int ASN1_TIME_compare(const ASN1_TIME *a, const ASN1_TIME *b);
\&
\& ASN1_GENERALIZEDTIME *ASN1_TIME_to_generalizedtime(ASN1_TIME *t,
\& ASN1_GENERALIZEDTIME **out);
.Ve
.SH "DESCRIPTION"
.IX Header "DESCRIPTION"
The \fI ASN1_TIME_set()\fR , \fI ASN1_UTCTIME_set()\fR and \fI ASN1_GENERALIZEDTIME_set()\fR
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functions set the structure \fB s\fR to the time represented by the time_t
value \fB t\fR . If \fB s\fR is \s -1NULL\s 0 a new time structure is allocated and returned.
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.PP
The \fI ASN1_TIME_adj()\fR , \fI ASN1_UTCTIME_adj()\fR and \fI ASN1_GENERALIZEDTIME_adj()\fR
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functions set the time structure \fB s\fR to the time represented
by the time \fB offset_day\fR and \fB offset_sec\fR after the time_t value \fB t\fR .
The values of \fB offset_day\fR or \fB offset_sec\fR can be negative to set a
time before \fB t\fR . The \fB offset_sec\fR value can also exceed the number of
seconds in a day. If \fB s\fR is \s -1NULL\s 0 a new structure is allocated
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and returned.
.PP
The \fI ASN1_TIME_set_string()\fR , \fI ASN1_UTCTIME_set_string()\fR and
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\& \fI ASN1_GENERALIZEDTIME_set_string()\fR functions set the time structure \fB s\fR
to the time represented by string \fB str\fR which must be in appropriate \s -1ASN\s 0.1
time format (for example \s -1YYMMDDHHMMSSZ\s 0 or \s -1YYYYMMDDHHMMSSZ\s 0). If \fB s\fR is \s -1NULL\s 0
this function performs a format check on \fB str\fR only. The string \fB str\fR
is copied into \fB s\fR .
.PP
\& \fI ASN1_TIME_set_string_X509()\fR sets \s -1ASN1_TIME\s 0 structure \fB s\fR to the time
represented by string \fB str\fR which must be in appropriate time format
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that \s -1RFC\s 0 5280 requires, which means it only allows \s -1YYMMDDHHMMSSZ\s 0 and
\& \s -1YYYYMMDDHHMMSSZ\s 0 (leap second is rejected), all other \s -1ASN\s 0.1 time format
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are not allowed. If \fB s\fR is \s -1NULL\s 0 this function performs a format check
on \fB str\fR only.
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.PP
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The \fI ASN1_TIME_normalize()\fR function converts an \s -1ASN1_GENERALIZEDTIME\s 0 or
\& \s -1ASN1_UTCTIME\s 0 into a time value that can be used in a certificate. It
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should be used after the \fI ASN1_TIME_set_string()\fR functions and before
\& \fI ASN1_TIME_print()\fR functions to get consistent (i.e. \s -1GMT\s 0) results.
.PP
The \fI ASN1_TIME_check()\fR , \fI ASN1_UTCTIME_check()\fR and \fI ASN1_GENERALIZEDTIME_check()\fR
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functions check the syntax of the time structure \fB s\fR .
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.PP
The \fI ASN1_TIME_print()\fR , \fI ASN1_UTCTIME_print()\fR and \fI ASN1_GENERALIZEDTIME_print()\fR
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functions print the time structure \fB s\fR to \s -1BIO\s 0 \fB b\fR in human readable
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format. It will be of the format \s -1MMM\s 0 \s -1DD\s 0 \s -1HH:MM:SS\s 0 \s -1YYYY\s 0 [\s -1GMT\s 0], for example
\& \* (L"Feb 3 00:55:52 2015 \s -1GMT\s 0\* (R" it does not include a newline. If the time
structure has invalid format it prints out \* (L"Bad time value\* (R" and returns
an error. The output for generalized time may include a fractional part
following the second.
.PP
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\& \fI ASN1_TIME_to_tm()\fR converts the time \fB s\fR to the standard \fB tm\fR structure.
If \fB s\fR is \s -1NULL\s 0, then the current time is converted. The output time is \s -1GMT\s 0.
The \fB tm_sec\fR , \fB tm_min\fR , \fB tm_hour\fR , \fB tm_mday\fR , \fB tm_wday\fR , \fB tm_yday\fR ,
\& \fB tm_mon\fR and \fB tm_year\fR fields of \fB tm\fR structure are set to proper values,
whereas all other fields are set to 0. If \fB tm\fR is \s -1NULL\s 0 this function performs
a format check on \fB s\fR only. If \fB s\fR is in Generalized format with fractional
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seconds, e.g. \s -1YYYYMMDDHHMMSS\s 0.SSSZ, the fractional seconds will be lost while
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converting \fB s\fR to \fB tm\fR structure.
.PP
\& \fI ASN1_TIME_diff()\fR sets \fB *pday\fR and \fB *psec\fR to the time difference between
\& \fB from\fR and \fB to\fR . If \fB to\fR represents a time later than \fB from\fR then
one or both (depending on the time difference) of \fB *pday\fR and \fB *psec\fR
will be positive. If \fB to\fR represents a time earlier than \fB from\fR then
one or both of \fB *pday\fR and \fB *psec\fR will be negative. If \fB to\fR and \fB from\fR
represent the same time then \fB *pday\fR and \fB *psec\fR will both be zero.
If both \fB *pday\fR and \fB *psec\fR are non-zero they will always have the same
sign. The value of \fB *psec\fR will always be less than the number of seconds
in a day. If \fB from\fR or \fB to\fR is \s -1NULL\s 0 the current time is used.
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.PP
The \fI ASN1_TIME_cmp_time_t()\fR and \fI ASN1_UTCTIME_cmp_time_t()\fR functions compare
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the two times represented by the time structure \fB s\fR and the time_t \fB t\fR .
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.PP
The \fI ASN1_TIME_compare()\fR function compares the two times represented by the
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time structures \fB a\fR and \fB b\fR .
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.PP
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The \fI ASN1_TIME_to_generalizedtime()\fR function converts an \s -1ASN1_TIME\s 0 to an
\& \s -1ASN1_GENERALIZEDTIME\s 0, regardless of year. If either \fB out\fR or
\& \fB *out\fR are \s -1NULL\s 0, then a new object is allocated and must be freed after use.
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.SH "NOTES"
.IX Header "NOTES"
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The \s -1ASN1_TIME\s 0 structure corresponds to the \s -1ASN\s 0.1 structure \fB Time\fR
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defined in \s -1RFC5280\s 0 et al. The time setting functions obey the rules outlined
in \s -1RFC5280:\s 0 if the date can be represented by UTCTime it is used, else
GeneralizedTime is used.
.PP
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The \s -1ASN1_TIME\s 0, \s -1ASN1_UTCTIME\s 0 and \s -1ASN1_GENERALIZEDTIME\s 0 structures are represented
as an \s -1ASN1_STRING\s 0 internally and can be freed up using \fI ASN1_STRING_free()\fR .
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.PP
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The \s -1ASN1_TIME\s 0 structure can represent years from 0000 to 9999 but no attempt
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is made to correct ancient calendar changes (for example from Julian to
Gregorian calendars).
.PP
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\& \s -1ASN1_UTCTIME\s 0 is limited to a year range of 1950 through 2049.
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.PP
Some applications add offset times directly to a time_t value and pass the
results to \fI ASN1_TIME_set()\fR (or equivalent). This can cause problems as the
time_t value can overflow on some systems resulting in unexpected results.
New applications should use \fI ASN1_TIME_adj()\fR instead and pass the offset value
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in the \fB offset_sec\fR and \fB offset_day\fR parameters instead of directly
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manipulating a time_t value.
.PP
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\& \fI ASN1_TIME_adj()\fR may change the type from \s -1ASN1_GENERALIZEDTIME\s 0 to \s -1ASN1_UTCTIME\s 0,
or vice versa, based on the resulting year. The \fI ASN1_GENERALIZEDTIME_adj()\fR and
\& \fI ASN1_UTCTIME_adj()\fR functions will not modify the type of the return structure.
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.PP
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It is recommended that functions starting with \s -1ASN1_TIME\s 0 be used instead of
those starting with \s -1ASN1_UTCTIME\s 0 or \s -1ASN1_GENERALIZEDTIME\s 0. The functions
starting with \s -1ASN1_UTCTIME\s 0 and \s -1ASN1_GENERALIZEDTIME\s 0 act only on that specific
time format. The functions starting with \s -1ASN1_TIME\s 0 will operate on either
format.
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.SH "BUGS"
.IX Header "BUGS"
\& \fI ASN1_TIME_print()\fR , \fI ASN1_UTCTIME_print()\fR and \fI ASN1_GENERALIZEDTIME_print()\fR
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do not print out the time zone: it either prints out \* (L"\s -1GMT\s 0\* (R" or nothing. But all
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certificates complying with \s -1RFC5280\s 0 et al use \s -1GMT\s 0 anyway.
.PP
Use the \fI ASN1_TIME_normalize()\fR function to normalize the time value before
printing to get \s -1GMT\s 0 results.
.SH "RETURN VALUES"
.IX Header "RETURN VALUES"
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\& \fI ASN1_TIME_set()\fR , \fI ASN1_UTCTIME_set()\fR , \fI ASN1_GENERALIZEDTIME_set()\fR , \fI ASN1_TIME_adj()\fR ,
ASN1_UTCTIME_adj and ASN1_GENERALIZEDTIME_set return a pointer to a time structure
or \s -1NULL\s 0 if an error occurred.
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.PP
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\& \fI ASN1_TIME_set_string()\fR , \fI ASN1_UTCTIME_set_string()\fR , \fI ASN1_GENERALIZEDTIME_set_string()\fR
\& \fI ASN1_TIME_set_string_X509()\fR return 1 if the time value is successfully set and 0 otherwise.
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.PP
\& \fI ASN1_TIME_normalize()\fR returns 1 on success, and 0 on error.
.PP
\& \fI ASN1_TIME_check()\fR , ASN1_UTCTIME_check and \fI ASN1_GENERALIZEDTIME_check()\fR return 1
if the structure is syntactically correct and 0 otherwise.
.PP
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\& \fI ASN1_TIME_print()\fR , \fI ASN1_UTCTIME_print()\fR and \fI ASN1_GENERALIZEDTIME_print()\fR return 1
if the time is successfully printed out and 0 if an error occurred (I/O error or
invalid time format).
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.PP
\& \fI ASN1_TIME_to_tm()\fR returns 1 if the time is successfully parsed and 0 if an
error occurred (invalid time format).
.PP
\& \fI ASN1_TIME_diff()\fR returns 1 for success and 0 for failure. It can fail if the
passed-in time structure has invalid syntax, for example.
.PP
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\& \fI ASN1_TIME_cmp_time_t()\fR and \fI ASN1_UTCTIME_cmp_time_t()\fR return \- 1 if \fB s\fR is
before \fB t\fR , 0 if \fB s\fR equals \fB t\fR , or 1 if \fB s\fR is after \fB t\fR . \- 2 is returned
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on error.
.PP
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\& \fI ASN1_TIME_compare()\fR returns \- 1 if \fB a\fR is before \fB b\fR , 0 if \fB a\fR equals \fB b\fR , or 1 if \fB a\fR is after \fB b\fR . \- 2 is returned on error.
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.PP
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\& \fI ASN1_TIME_to_generalizedtime()\fR returns a pointer to
the appropriate time structure on success or \s -1NULL\s 0 if an error occurred.
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.SH "EXAMPLES"
.IX Header "EXAMPLES"
Set a time structure to one hour after the current time and print it out:
.PP
.Vb 2
\& #include <time.h>
\& #include <openssl/asn1.h>
\&
\& ASN1_TIME *tm;
\& time_t t;
\& BIO *b;
\&
\& t = time(NULL);
\& tm = ASN1_TIME_adj(NULL, t, 0, 60 * 60);
\& b = BIO_new_fp(stdout, BIO_NOCLOSE);
\& ASN1_TIME_print(b, tm);
\& ASN1_STRING_free(tm);
\& BIO_free(b);
.Ve
.PP
Determine if one time is later or sooner than the current time:
.PP
.Vb 1
\& int day, sec;
\&
\& if (!ASN1_TIME_diff(&day, &sec, NULL, to))
\& /* Invalid time format */
\&
\& if (day > 0 || sec > 0)
\& printf("Later\e n");
\& else if (day < 0 || sec < 0)
\& printf("Sooner\e n");
\& else
\& printf("Same\e n");
.Ve
.SH "HISTORY"
.IX Header "HISTORY"
The \fI ASN1_TIME_to_tm()\fR function was added in OpenSSL 1.1.1.
The \fI ASN1_TIME_set_string_X509()\fR function was added in OpenSSL 1.1.1.
The \fI ASN1_TIME_normalize()\fR function was added in OpenSSL 1.1.1.
The \fI ASN1_TIME_cmp_time_t()\fR function was added in OpenSSL 1.1.1.
The \fI ASN1_TIME_compare()\fR function was added in OpenSSL 1.1.1.
.SH "COPYRIGHT"
.IX Header "COPYRIGHT"
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Copyright 2015\- 2019 The OpenSSL Project Authors. All Rights Reserved.
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.PP
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Licensed under the OpenSSL license (the \* (L"License\* (R"). You may not use
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this file except in compliance with the License. You can obtain a copy
in the file \s -1LICENSE\s 0 in the source distribution or at
<https://www.openssl.org/source/license.html>.