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Modernize and fix doc’s “Date and Time” (BZ 31876)
POSIX.1-2024 (now official) specifies tm_gmtoff and tm_zone. This is a good time to update the manual’s “Date and Time” chapter so I went through it, fixed some outdated stuff that had been in there for decades, and improved it to match POSIX.1-2024 better and to clarify some implementation-defined behavior. Glibc already conforms to POSIX.1-2024 in these matters, so this is merely a documentation change. * manual/examples/strftim.c: Use snprintf instead of now-deprecated function asctime. Check for localtime failure. Simplify by using puts instead of fputs. Prefer ‘buf, sizeof buf’ to less-obvious ‘buffer, SIZE’. * manual/examples/timespec_subtract.c: Modernize to use struct timespec not struct timeval, and rename from timeval_subtract.c. All uses changed. Check for overflow. Do not check for negative return value, which ought to be OK since negative time_t is OK. Use GNU indenting style. * manual/time.texi: Document CLOCKS_PER_SEC, TIME_UTC, timespec_get, timespec_getres, strftime_l. Document the storage lifetime of tm_zone and of tzname. Caution against use of tzname, timezone and daylight, saying that these variables have unspecified values when TZ is geographic. This is what glibc actually does (contrary to what the manual said before this patch), and POSIX is planned to say the same thing <https://austingroupbugs.net/view.php?id=1816>. Also say that directly accessing the variables is not thread-safe. Say that localtime_r and ctime_r don’t necessarily set time zone state. Similarly, in the tzset documentation, say that it is called by ctime, localtime, mktime, strftime, not that it is called by all time conversion functions that depend on the time zone. Say that tm_isdst is useful mostly just for mktime, and that other uses should prefer tm_gmtoff and tm_zone instead. Do not say that strftime ignores tm_gmtoff and tm_zone, because it doesn’t do that. Document what gmtime does to tm_gmtoff and tm_zone. Say that the asctime, asctime_r, ctime, and ctime_r are now deprecated and/or obsolescent, and that behavior is undefined if the year is < 1000 or > 9999. Document strftime before these now-obsolescent functions, so that readers see the useful function first. Coin the terms “geographical format” and “proleptic format” for the two main formats of TZ settings, to simplify exposition. Use this wording consistently. Update top-level proleptic syntax to match POSIX.1-2024, which glibc already implements. Document the angle-bracket quoted forms of time zone abbreviations in proleptic TZ. Say that time zone abbreviations can contain only ASCII alphanumerics, ‘+’, and ‘-’. Document what happens if the proleptic form specifies a DST abbreviation and offset but omits the rules. POSIX says this is implementation-defined so we need to document it. Although this documentation mentions ‘posixrules’ tersely, we need to rethink ‘posixrules’ since I think it stops working after 2038. Clarify wording about TZ settings beginning with ‘;’. Say that timegm is in ISO C (as of C23). Say that POSIX.1-2024 removed gettimeofday. Say that tm_gmtoff and tm_zone are extensions to ISO C, which is clearer than saying they are invisible in a struct ISO C enviroment, and gives us more wiggle room if we want to make them visible in strict ISO C, something that ISO C allows. Drop mention of old standards like POSIX.1c and POSIX.2-1992 in the text when the history is so old that it’s no longer useful in a general-purpose manual. Define Coordinated Universal Time (UTC), time zone, time zone ruleset, and POSIX Epoch, and use these phrases more consistently. Improve TZ examples to show more variety, and to reflect current practice and timestamps. Remove obsolete example about Argentina. Add an example for Ireland. Don’t rely on GCC extensions when explaining ctime_r. Do not say that difftime produces the mathematically correct result, since it might be inexact. For clock_t don’t say “as in the example above” when there is no such example, and don’t say that casting to double works “properly and consistently no matter what”, as it suffers from rounding and overflow. Don’t say broken-down time is not useful for calculations; it’s merely painful. Say that UTC is not defined before 1960. Rename Time Zone Functions to Time Zone State. All uses changed. Update Internet RFC 822 → 5322, 1305 → 5905. Drop specific years of ISO 8601 as they don’t matter. Minor style changes: @code{"..."} → @t{"..."} to avoid overquoting in info files, @code → @env for environment variables, Daylight Saving Time → daylight saving time, white space → whitespace, prime meridian → Prime Meridian.
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@ -14260,7 +14260,7 @@ sigusr.c
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dir2.c
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inetsrv.c
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argp-ex3.c
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timeval_subtract.c
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timespec_subtract.c
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popen.c
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filecli.c
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db.c
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@ -89,7 +89,7 @@ process can have open simultaneously. @xref{Opening Streams}.
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@deftypevr Macro int TZNAME_MAX
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@standards{POSIX.1, limits.h}
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If defined, the unvarying maximum length of a time zone abbreviation.
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@xref{Time Zone Functions}.
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@xref{TZ Variable}.
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@end deftypevr
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These limit macros are always defined in @file{limits.h}.
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@ -630,7 +630,7 @@ a different license:
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@itemize @bullet
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@item
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The timezone support code is derived from the public-domain timezone
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The time zone support code is derived from the public-domain time zone
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package by Arthur David Olson and his many contributors.
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@item
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@ -18,30 +18,32 @@
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#include <time.h>
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#include <stdio.h>
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#define SIZE 256
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int
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main (void)
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{
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char buffer[SIZE];
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time_t curtime;
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struct tm *loctime;
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/* This buffer is big enough that the strftime calls
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below cannot possibly exhaust it. */
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char buf[256];
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/* Get the current time. */
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curtime = time (NULL);
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time_t curtime = time (NULL);
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/* Convert it to local time representation. */
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loctime = localtime (&curtime);
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struct tm *lt = localtime (&curtime);
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if (!lt)
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return 1;
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/* Print out the date and time in the standard format. */
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fputs (asctime (loctime), stdout);
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/* Print the date and time in a simple format
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that is independent of locale. */
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strftime (buf, sizeof buf, "%Y-%m-%d %H:%M:%S", lt);
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puts (buf);
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/*@group*/
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/* Print it out in a nice format. */
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strftime (buffer, SIZE, "Today is %A, %B %d.\n", loctime);
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fputs (buffer, stdout);
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strftime (buffer, SIZE, "The time is %I:%M %p.\n", loctime);
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fputs (buffer, stdout);
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/* Print it in a nicer English format. */
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strftime (buf, sizeof buf, "Today is %A, %B %d.", lt);
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puts (buf);
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strftime (buf, sizeof buf, "The time is %I:%M %p.", lt);
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puts (buf);
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return 0;
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}
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36
manual/examples/timespec_subtract.c
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36
manual/examples/timespec_subtract.c
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@ -0,0 +1,36 @@
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/* struct timespec subtraction.
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Copyright (C) 1991-2024 Free Software Foundation, Inc.
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This program is free software; you can redistribute it and/or
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modify it under the terms of the GNU General Public License
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as published by the Free Software Foundation; either version 2
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of the License, or (at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, see <https://www.gnu.org/licenses/>.
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*/
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#include <stdckdint.h>
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#include <time.h>
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/* Put into *R the difference between X and Y.
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Return true if overflow occurs, false otherwise. */
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bool
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timespec_subtract (struct timespec *r,
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struct timespec x, struct timespec y)
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{
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/* Compute nanoseconds, setting @var{borrow} to 1, 0, or -1
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for propagation into seconds. */
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long int nsec_diff = x.tv_nsec - y.tv_nsec;
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int borrow = (nsec_diff < 0) - ! (nsec_diff < 1000000000);
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r->tv_nsec = nsec_diff + 1000000000 * borrow;
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/* Compute seconds, returning true if this overflows. */
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bool v = ckd_sub (&r->tv_sec, x.tv_sec, y.tv_sec);
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return v ^ ckd_sub (&r->tv_sec, r->tv_sec, borrow);
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}
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@ -1,44 +0,0 @@
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/* struct timeval subtraction.
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Copyright (C) 1991-2024 Free Software Foundation, Inc.
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This program is free software; you can redistribute it and/or
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modify it under the terms of the GNU General Public License
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as published by the Free Software Foundation; either version 2
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of the License, or (at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, see <https://www.gnu.org/licenses/>.
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*/
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/* Subtract the `struct timeval' values X and Y,
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storing the result in RESULT.
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Return 1 if the difference is negative, otherwise 0. */
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int
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timeval_subtract (struct timeval *result, struct timeval *x, struct timeval *y)
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{
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/* Perform the carry for the later subtraction by updating @var{y}. */
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if (x->tv_usec < y->tv_usec) {
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int nsec = (y->tv_usec - x->tv_usec) / 1000000 + 1;
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y->tv_usec -= 1000000 * nsec;
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y->tv_sec += nsec;
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}
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if (x->tv_usec - y->tv_usec > 1000000) {
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int nsec = (x->tv_usec - y->tv_usec) / 1000000;
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y->tv_usec += 1000000 * nsec;
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y->tv_sec -= nsec;
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}
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/* Compute the time remaining to wait.
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@code{tv_usec} is certainly positive. */
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result->tv_sec = x->tv_sec - y->tv_sec;
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result->tv_usec = x->tv_usec - y->tv_usec;
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/* Return 1 if result is negative. */
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return x->tv_sec < y->tv_sec;
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}
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@ -206,7 +206,7 @@ This option hardcodes the newly built C library path in dynamic tests
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so that they can be invoked directly.
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@item --disable-timezone-tools
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By default, timezone related utilities (@command{zic}, @command{zdump},
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By default, time zone related utilities (@command{zic}, @command{zdump},
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and @command{tzselect}) are installed with @theglibc{}. If you are building
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these independently (e.g. by using the @samp{tzcode} package), then this
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option will allow disabling the install of these.
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@ -456,9 +456,9 @@ permissions on a pseudoterminal so it can be used by the calling process.
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If you are using a Linux kernel with the @code{devpts} filesystem enabled
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and mounted at @file{/dev/pts}, you don't need this program.
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After installation you should configure the timezone and install locales
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for your system. The time zone configuration ensures that your system
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time matches the time for your current timezone. The locales ensure that
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After installation you should configure the time zone ruleset and install
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locales for your system. The time zone ruleset ensures that timestamps
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are processed correctly for your location. The locales ensure that
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the display of information on your system matches the expectations of
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your language and geographic region.
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@ -481,12 +481,12 @@ as files in the default configured locale installation directory (derived from
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root use @samp{DESTDIR} e.g.@: @samp{make localedata/install-locale-files
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DESTDIR=/opt/glibc}, but note that this does not change the configured prefix.
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To configure the locally used timezone, set the @code{TZ} environment
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To configure the time zone ruleset, set the @code{TZ} environment
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variable. The script @code{tzselect} helps you to select the right value.
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As an example, for Germany, @code{tzselect} would tell you to use
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@samp{TZ='Europe/Berlin'}. For a system wide installation (the given
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paths are for an installation with @samp{--prefix=/usr}), link the
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timezone file which is in @file{/usr/share/zoneinfo} to the file
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time zone file which is in @file{/usr/share/zoneinfo} to the file
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@file{/etc/localtime}. For Germany, you might execute @samp{ln -s
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/usr/share/zoneinfo/Europe/Berlin /etc/localtime}.
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@item TZ
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@cindex @code{TZ} environment variable
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This specifies the time zone. @xref{TZ Variable}, for information about
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the format of this string and how it is used.
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This specifies the time zone ruleset. @xref{TZ Variable}.
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@item LANG
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@cindex @code{LANG} environment variable
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915
manual/time.texi
915
manual/time.texi
File diff suppressed because it is too large
Load Diff
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#include <time.h>
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/* The C Standard says that localtime and gmtime return the same pointer. */
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/* C89 says that localtime and gmtime return the same pointer.
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Although C99 and later relax this to let localtime and gmtime
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return different pointers, POSIX and glibc currently follow C89's stricter
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requirement even though this can cause naive programs to misbehave. */
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struct tm _tmbuf;
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