2014-09-11 Freddie Chopin <freddie_chopin@op.pl>

* libc/time/month_lengths.c: New file with __month_lengths array
        (previously mon_lengths array in mktm_r.c)
        * libc/time/tzcalc_limits.c: New file with __tzcalc_limits() from
        mktm_r.c
        * libc/time/lcltime_r.c (localtime_r): Simplify by changing call to
        _mktm_r() with call to gmtime_r() and code moved from _mktm_r() which
        was used to do time zone adjustments
        * libc/time/gmtime_r.c (gmtime_r): Simplify by moving all relevant
        code from _mktm_r(), breaking all dependencies on time zone related
        functions
        * libc/time/mktm_r.c: Delete file
        * libc/time/local.h: Update accordingly - remove declaration of
        _mktm_r(), add declaration of __month_lengths[]
        * libc/time/Makefile.am: Modify accordingly.
        * libc/time/Makefile.in: Regenerate.
This commit is contained in:
Jeff Johnston 2014-09-11 21:55:01 +00:00
parent 1c5ab1f862
commit c9dded6775
7 changed files with 246 additions and 294 deletions

View File

@ -1,3 +1,21 @@
2014-09-11 Freddie Chopin <freddie_chopin@op.pl>
* libc/time/month_lengths.c: New file with __month_lengths array
(previously mon_lengths array in mktm_r.c)
* libc/time/tzcalc_limits.c: New file with __tzcalc_limits() from
mktm_r.c
* libc/time/lcltime_r.c (localtime_r): Simplify by changing call to
_mktm_r() with call to gmtime_r() and code moved from _mktm_r() which
was used to do time zone adjustments
* libc/time/gmtime_r.c (gmtime_r): Simplify by moving all relevant
code from _mktm_r(), breaking all dependencies on time zone related
functions
* libc/time/mktm_r.c: Delete file
* libc/time/local.h: Update accordingly - remove declaration of
_mktm_r(), add declaration of __month_lengths[]
* libc/time/Makefile.am: Modify accordingly.
* libc/time/Makefile.in: Regenerate.
2014-09-08 Freddie Chopin <freddie_chopin@op.pl>
* libc/machine/arm/Makefile.am: Fix typo.

View File

@ -17,10 +17,11 @@ LIB_SOURCES = \
lcltime.c \
lcltime_r.c \
mktime.c \
mktm_r.c \
month_lengths.c \
strftime.c \
strptime.c \
time.c \
tzcalc_limits.c \
tzlock.c \
tzset.c \
tzset_r.c \

View File

@ -78,19 +78,20 @@ am__objects_1 = lib_a-asctime.$(OBJEXT) lib_a-asctime_r.$(OBJEXT) \
lib_a-gettzinfo.$(OBJEXT) lib_a-gmtime.$(OBJEXT) \
lib_a-gmtime_r.$(OBJEXT) lib_a-lcltime.$(OBJEXT) \
lib_a-lcltime_r.$(OBJEXT) lib_a-mktime.$(OBJEXT) \
lib_a-mktm_r.$(OBJEXT) lib_a-strftime.$(OBJEXT) \
lib_a-month_lengths.$(OBJEXT) lib_a-strftime.$(OBJEXT) \
lib_a-strptime.$(OBJEXT) lib_a-time.$(OBJEXT) \
lib_a-tzlock.$(OBJEXT) lib_a-tzset.$(OBJEXT) \
lib_a-tzset_r.$(OBJEXT) lib_a-tzvars.$(OBJEXT) \
lib_a-wcsftime.$(OBJEXT)
lib_a-tzcalc_limits.$(OBJEXT) lib_a-tzlock.$(OBJEXT) \
lib_a-tzset.$(OBJEXT) lib_a-tzset_r.$(OBJEXT) \
lib_a-tzvars.$(OBJEXT) lib_a-wcsftime.$(OBJEXT)
@USE_LIBTOOL_FALSE@am_lib_a_OBJECTS = $(am__objects_1)
lib_a_OBJECTS = $(am_lib_a_OBJECTS)
LTLIBRARIES = $(noinst_LTLIBRARIES)
libtime_la_LIBADD =
am__objects_2 = asctime.lo asctime_r.lo clock.lo ctime.lo ctime_r.lo \
difftime.lo gettzinfo.lo gmtime.lo gmtime_r.lo lcltime.lo \
lcltime_r.lo mktime.lo mktm_r.lo strftime.lo strptime.lo \
time.lo tzlock.lo tzset.lo tzset_r.lo tzvars.lo wcsftime.lo
lcltime_r.lo mktime.lo month_lengths.lo strftime.lo \
strptime.lo time.lo tzcalc_limits.lo tzlock.lo tzset.lo \
tzset_r.lo tzvars.lo wcsftime.lo
@USE_LIBTOOL_TRUE@am_libtime_la_OBJECTS = $(am__objects_2)
libtime_la_OBJECTS = $(am_libtime_la_OBJECTS)
libtime_la_LINK = $(LIBTOOL) --tag=CC $(AM_LIBTOOLFLAGS) \
@ -277,10 +278,11 @@ LIB_SOURCES = \
lcltime.c \
lcltime_r.c \
mktime.c \
mktm_r.c \
month_lengths.c \
strftime.c \
strptime.c \
time.c \
tzcalc_limits.c \
tzlock.c \
tzset.c \
tzset_r.c \
@ -454,11 +456,11 @@ lib_a-mktime.o: mktime.c
lib_a-mktime.obj: mktime.c
$(CC) $(DEFS) $(DEFAULT_INCLUDES) $(INCLUDES) $(AM_CPPFLAGS) $(CPPFLAGS) $(lib_a_CFLAGS) $(CFLAGS) -c -o lib_a-mktime.obj `if test -f 'mktime.c'; then $(CYGPATH_W) 'mktime.c'; else $(CYGPATH_W) '$(srcdir)/mktime.c'; fi`
lib_a-mktm_r.o: mktm_r.c
$(CC) $(DEFS) $(DEFAULT_INCLUDES) $(INCLUDES) $(AM_CPPFLAGS) $(CPPFLAGS) $(lib_a_CFLAGS) $(CFLAGS) -c -o lib_a-mktm_r.o `test -f 'mktm_r.c' || echo '$(srcdir)/'`mktm_r.c
lib_a-month_lengths.o: month_lengths.c
$(CC) $(DEFS) $(DEFAULT_INCLUDES) $(INCLUDES) $(AM_CPPFLAGS) $(CPPFLAGS) $(lib_a_CFLAGS) $(CFLAGS) -c -o lib_a-month_lengths.o `test -f 'month_lengths.c' || echo '$(srcdir)/'`month_lengths.c
lib_a-mktm_r.obj: mktm_r.c
$(CC) $(DEFS) $(DEFAULT_INCLUDES) $(INCLUDES) $(AM_CPPFLAGS) $(CPPFLAGS) $(lib_a_CFLAGS) $(CFLAGS) -c -o lib_a-mktm_r.obj `if test -f 'mktm_r.c'; then $(CYGPATH_W) 'mktm_r.c'; else $(CYGPATH_W) '$(srcdir)/mktm_r.c'; fi`
lib_a-month_lengths.obj: month_lengths.c
$(CC) $(DEFS) $(DEFAULT_INCLUDES) $(INCLUDES) $(AM_CPPFLAGS) $(CPPFLAGS) $(lib_a_CFLAGS) $(CFLAGS) -c -o lib_a-month_lengths.obj `if test -f 'month_lengths.c'; then $(CYGPATH_W) 'month_lengths.c'; else $(CYGPATH_W) '$(srcdir)/month_lengths.c'; fi`
lib_a-strftime.o: strftime.c
$(CC) $(DEFS) $(DEFAULT_INCLUDES) $(INCLUDES) $(AM_CPPFLAGS) $(CPPFLAGS) $(lib_a_CFLAGS) $(CFLAGS) -c -o lib_a-strftime.o `test -f 'strftime.c' || echo '$(srcdir)/'`strftime.c
@ -478,6 +480,12 @@ lib_a-time.o: time.c
lib_a-time.obj: time.c
$(CC) $(DEFS) $(DEFAULT_INCLUDES) $(INCLUDES) $(AM_CPPFLAGS) $(CPPFLAGS) $(lib_a_CFLAGS) $(CFLAGS) -c -o lib_a-time.obj `if test -f 'time.c'; then $(CYGPATH_W) 'time.c'; else $(CYGPATH_W) '$(srcdir)/time.c'; fi`
lib_a-tzcalc_limits.o: tzcalc_limits.c
$(CC) $(DEFS) $(DEFAULT_INCLUDES) $(INCLUDES) $(AM_CPPFLAGS) $(CPPFLAGS) $(lib_a_CFLAGS) $(CFLAGS) -c -o lib_a-tzcalc_limits.o `test -f 'tzcalc_limits.c' || echo '$(srcdir)/'`tzcalc_limits.c
lib_a-tzcalc_limits.obj: tzcalc_limits.c
$(CC) $(DEFS) $(DEFAULT_INCLUDES) $(INCLUDES) $(AM_CPPFLAGS) $(CPPFLAGS) $(lib_a_CFLAGS) $(CFLAGS) -c -o lib_a-tzcalc_limits.obj `if test -f 'tzcalc_limits.c'; then $(CYGPATH_W) 'tzcalc_limits.c'; else $(CYGPATH_W) '$(srcdir)/tzcalc_limits.c'; fi`
lib_a-tzlock.o: tzlock.c
$(CC) $(DEFS) $(DEFAULT_INCLUDES) $(INCLUDES) $(AM_CPPFLAGS) $(CPPFLAGS) $(lib_a_CFLAGS) $(CFLAGS) -c -o lib_a-tzlock.o `test -f 'tzlock.c' || echo '$(srcdir)/'`tzlock.c

View File

@ -1,14 +1,107 @@
/*
* gmtime_r.c
* Original Author: Adapted from tzcode maintained by Arthur David Olson.
* Modifications:
* - Changed to mktm_r and added __tzcalc_limits - 04/10/02, Jeff Johnston
* - Fixed bug in mday computations - 08/12/04, Alex Mogilnikov <alx@intellectronika.ru>
* - Fixed bug in __tzcalc_limits - 08/12/04, Alex Mogilnikov <alx@intellectronika.ru>
* - Move code from _mktm_r() to gmtime_r() - 05/09/14, Freddie Chopin <freddie_chopin@op.pl>
*
* Converts the calendar time pointed to by tim_p into a broken-down time
* expressed as local time. Returns a pointer to a structure containing the
* broken-down time.
*/
#include <time.h>
#include "local.h"
/* there are 97 leap years in 400-year periods */
#define DAYS_PER_400_YEARS ((400 - 97) * 365 + 97 * 366)
/* there are 24 leap years in 100-year periods */
#define DAYS_PER_100_YEARS ((100 - 24) * 365 + 24 * 366)
/* there is one leap year every 4 years */
#define DAYS_PER_4_YEARS (3 * 365 + 366)
static _CONST int days_per_year[4] = {
365, /* 1970 or 1966 */
365, /* 1971 or 1967 */
366, /* 1972 or 1968 */
365 /* 1973 or 1969 */
} ;
struct tm *
_DEFUN (gmtime_r, (tim_p, res),
_CONST time_t *__restrict tim_p _AND
struct tm *__restrict res)
{
return (_mktm_r (tim_p, res, 1));
long days, rem;
_CONST time_t lcltime = *tim_p;
int year;
int years400, years100, years4;
int yearleap;
_CONST int *ip;
days = ((long)lcltime) / SECSPERDAY;
rem = ((long)lcltime) % SECSPERDAY;
while (rem < 0)
{
rem += SECSPERDAY;
--days;
}
while (rem >= SECSPERDAY)
{
rem -= SECSPERDAY;
++days;
}
/* compute hour, min, and sec */
res->tm_hour = (int) (rem / SECSPERHOUR);
rem %= SECSPERHOUR;
res->tm_min = (int) (rem / SECSPERMIN);
res->tm_sec = (int) (rem % SECSPERMIN);
/* compute day of week */
if ((res->tm_wday = ((EPOCH_WDAY + days) % DAYSPERWEEK)) < 0)
res->tm_wday += DAYSPERWEEK;
/* compute year & day of year */
years400 = days / DAYS_PER_400_YEARS;
days -= years400 * DAYS_PER_400_YEARS;
years100 = days / DAYS_PER_100_YEARS;
days -= years100 * DAYS_PER_100_YEARS;
years4 = days / DAYS_PER_4_YEARS;
days -= years4 * DAYS_PER_4_YEARS;
year = EPOCH_YEAR + years400 * 400 + years100 * 100 + years4 * 4;
/* the value left in days is based in 1970 */
if (days < 0)
{
ip = &days_per_year[3];
while (days < 0)
{
days += *ip--;
--year;
}
}
else
{
ip = &days_per_year[0];
while (days >= *ip)
{
days -= *ip++;
++year;
}
}
res->tm_year = year - YEAR_BASE;
res->tm_yday = days;
yearleap = isleap(year);
ip = __month_lengths[yearleap];
for (res->tm_mon = 0; days >= ip[res->tm_mon]; ++res->tm_mon)
days -= ip[res->tm_mon];
res->tm_mday = days + 1;
res->tm_isdst = 0;
return (res);
}

View File

@ -1,12 +1,18 @@
/*
* localtime_r.c
* Original Author: Adapted from tzcode maintained by Arthur David Olson.
* Modifications:
* - Changed to mktm_r and added __tzcalc_limits - 04/10/02, Jeff Johnston
* - Fixed bug in mday computations - 08/12/04, Alex Mogilnikov <alx@intellectronika.ru>
* - Fixed bug in __tzcalc_limits - 08/12/04, Alex Mogilnikov <alx@intellectronika.ru>
* - Implement localtime_r() with gmtime_r() and the conditional code moved
* from _mktm_r() - 05/09/14, Freddie Chopin <freddie_chopin@op.pl>
*
* Converts the calendar time pointed to by tim_p into a broken-down time
* expressed as local time. Returns a pointer to a structure containing the
* broken-down time.
*/
#include <time.h>
#include "local.h"
struct tm *
@ -14,5 +20,107 @@ _DEFUN (localtime_r, (tim_p, res),
_CONST time_t *__restrict tim_p _AND
struct tm *__restrict res)
{
return _mktm_r (tim_p, res, 0);
long offset;
int hours, mins, secs;
int year;
__tzinfo_type *_CONST tz = __gettzinfo ();
_CONST int *ip;
res = gmtime_r (tim_p, res);
year = res->tm_year + YEAR_BASE;
ip = __month_lengths[isleap(year)];
TZ_LOCK;
if (_daylight)
{
if (year == tz->__tzyear || __tzcalc_limits (year))
res->tm_isdst = (tz->__tznorth
? (*tim_p >= tz->__tzrule[0].change
&& *tim_p < tz->__tzrule[1].change)
: (*tim_p >= tz->__tzrule[0].change
|| *tim_p < tz->__tzrule[1].change));
else
res->tm_isdst = -1;
}
else
res->tm_isdst = 0;
offset = (res->tm_isdst == 1
? tz->__tzrule[1].offset
: tz->__tzrule[0].offset);
hours = (int) (offset / SECSPERHOUR);
offset = offset % SECSPERHOUR;
mins = (int) (offset / SECSPERMIN);
secs = (int) (offset % SECSPERMIN);
res->tm_sec -= secs;
res->tm_min -= mins;
res->tm_hour -= hours;
if (res->tm_sec >= SECSPERMIN)
{
res->tm_min += 1;
res->tm_sec -= SECSPERMIN;
}
else if (res->tm_sec < 0)
{
res->tm_min -= 1;
res->tm_sec += SECSPERMIN;
}
if (res->tm_min >= MINSPERHOUR)
{
res->tm_hour += 1;
res->tm_min -= MINSPERHOUR;
}
else if (res->tm_min < 0)
{
res->tm_hour -= 1;
res->tm_min += MINSPERHOUR;
}
if (res->tm_hour >= HOURSPERDAY)
{
++res->tm_yday;
++res->tm_wday;
if (res->tm_wday > 6)
res->tm_wday = 0;
++res->tm_mday;
res->tm_hour -= HOURSPERDAY;
if (res->tm_mday > ip[res->tm_mon])
{
res->tm_mday -= ip[res->tm_mon];
res->tm_mon += 1;
if (res->tm_mon == 12)
{
res->tm_mon = 0;
res->tm_year += 1;
res->tm_yday = 0;
}
}
}
else if (res->tm_hour < 0)
{
res->tm_yday -= 1;
res->tm_wday -= 1;
if (res->tm_wday < 0)
res->tm_wday = 6;
res->tm_mday -= 1;
res->tm_hour += 24;
if (res->tm_mday == 0)
{
res->tm_mon -= 1;
if (res->tm_mon < 0)
{
res->tm_mon = 11;
res->tm_year -= 1;
res->tm_yday = 364 + isleap(res->tm_year + YEAR_BASE);
}
res->tm_mday = ip[res->tm_mon];
}
}
TZ_UNLOCK;
return (res);
}

View File

@ -19,9 +19,10 @@
#define isleap(y) ((((y) % 4) == 0 && ((y) % 100) != 0) || ((y) % 400) == 0)
struct tm * _EXFUN (_mktm_r, (_CONST time_t *, struct tm *, int __is_gmtime));
int _EXFUN (__tzcalc_limits, (int __year));
extern _CONST int __month_lengths[2][MONSPERYEAR];
/* locks for multi-threading */
#ifdef __SINGLE_THREAD__
#define TZ_LOCK

View File

@ -1,277 +0,0 @@
/*
* mktm_r.c
* Original Author: Adapted from tzcode maintained by Arthur David Olson.
* Modifications: Changed to mktm_r and added __tzcalc_limits - 04/10/02, Jeff Johnston
* Fixed bug in mday computations - 08/12/04, Alex Mogilnikov <alx@intellectronika.ru>
* Fixed bug in __tzcalc_limits - 08/12/04, Alex Mogilnikov <alx@intellectronika.ru>
*
* Converts the calendar time pointed to by tim_p into a broken-down time
* expressed as local time. Returns a pointer to a structure containing the
* broken-down time.
*/
#include <stdlib.h>
#include <time.h>
#include "local.h"
/* there are 97 leap years in 400-year periods */
#define DAYS_PER_400_YEARS ((400 - 97) * 365 + 97 * 366)
/* there are 24 leap years in 100-year periods */
#define DAYS_PER_100_YEARS ((100 - 24) * 365 + 24 * 366)
/* there is one leap year every 4 years */
#define DAYS_PER_4_YEARS (3 * 365 + 366)
static _CONST int mon_lengths[2][MONSPERYEAR] = {
{31, 28, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31},
{31, 29, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31}
} ;
static _CONST int days_per_year[4] = {
365, /* 1970 or 1966 */
365, /* 1971 or 1967 */
366, /* 1972 or 1968 */
365 /* 1973 or 1969 */
} ;
struct tm *
_DEFUN (_mktm_r, (tim_p, res, is_gmtime),
_CONST time_t * tim_p _AND
struct tm *res _AND
int is_gmtime)
{
long days, rem;
time_t lcltime;
int y;
int years400, years100, years4;
int yleap;
_CONST int *ip;
__tzinfo_type *tz = __gettzinfo ();
/* base decision about std/dst time on current time */
lcltime = *tim_p;
days = ((long)lcltime) / SECSPERDAY;
rem = ((long)lcltime) % SECSPERDAY;
while (rem < 0)
{
rem += SECSPERDAY;
--days;
}
while (rem >= SECSPERDAY)
{
rem -= SECSPERDAY;
++days;
}
/* compute hour, min, and sec */
res->tm_hour = (int) (rem / SECSPERHOUR);
rem %= SECSPERHOUR;
res->tm_min = (int) (rem / SECSPERMIN);
res->tm_sec = (int) (rem % SECSPERMIN);
/* compute day of week */
if ((res->tm_wday = ((EPOCH_WDAY + days) % DAYSPERWEEK)) < 0)
res->tm_wday += DAYSPERWEEK;
/* compute year & day of year */
years400 = days / DAYS_PER_400_YEARS;
days -= years400 * DAYS_PER_400_YEARS;
years100 = days / DAYS_PER_100_YEARS;
days -= years100 * DAYS_PER_100_YEARS;
years4 = days / DAYS_PER_4_YEARS;
days -= years4 * DAYS_PER_4_YEARS;
y = EPOCH_YEAR + years400 * 400 + years100 * 100 + years4 * 4;
/* the value left in days is based in 1970 */
if (days < 0)
{
ip = &days_per_year[3];
while (days < 0)
{
days += *ip--;
--y;
}
}
else
{
ip = &days_per_year[0];
while (days >= *ip)
{
days -= *ip++;
++y;
}
}
res->tm_year = y - YEAR_BASE;
res->tm_yday = days;
yleap = isleap(y);
ip = mon_lengths[yleap];
for (res->tm_mon = 0; days >= ip[res->tm_mon]; ++res->tm_mon)
days -= ip[res->tm_mon];
res->tm_mday = days + 1;
if (!is_gmtime)
{
long offset;
int hours, mins, secs;
TZ_LOCK;
if (_daylight)
{
if (y == tz->__tzyear || __tzcalc_limits (y))
res->tm_isdst = (tz->__tznorth
? (*tim_p >= tz->__tzrule[0].change
&& *tim_p < tz->__tzrule[1].change)
: (*tim_p >= tz->__tzrule[0].change
|| *tim_p < tz->__tzrule[1].change));
else
res->tm_isdst = -1;
}
else
res->tm_isdst = 0;
offset = (res->tm_isdst == 1
? tz->__tzrule[1].offset
: tz->__tzrule[0].offset);
hours = (int) (offset / SECSPERHOUR);
offset = offset % SECSPERHOUR;
mins = (int) (offset / SECSPERMIN);
secs = (int) (offset % SECSPERMIN);
res->tm_sec -= secs;
res->tm_min -= mins;
res->tm_hour -= hours;
if (res->tm_sec >= SECSPERMIN)
{
res->tm_min += 1;
res->tm_sec -= SECSPERMIN;
}
else if (res->tm_sec < 0)
{
res->tm_min -= 1;
res->tm_sec += SECSPERMIN;
}
if (res->tm_min >= MINSPERHOUR)
{
res->tm_hour += 1;
res->tm_min -= MINSPERHOUR;
}
else if (res->tm_min < 0)
{
res->tm_hour -= 1;
res->tm_min += MINSPERHOUR;
}
if (res->tm_hour >= HOURSPERDAY)
{
++res->tm_yday;
++res->tm_wday;
if (res->tm_wday > 6)
res->tm_wday = 0;
++res->tm_mday;
res->tm_hour -= HOURSPERDAY;
if (res->tm_mday > ip[res->tm_mon])
{
res->tm_mday -= ip[res->tm_mon];
res->tm_mon += 1;
if (res->tm_mon == 12)
{
res->tm_mon = 0;
res->tm_year += 1;
res->tm_yday = 0;
}
}
}
else if (res->tm_hour < 0)
{
res->tm_yday -= 1;
res->tm_wday -= 1;
if (res->tm_wday < 0)
res->tm_wday = 6;
res->tm_mday -= 1;
res->tm_hour += 24;
if (res->tm_mday == 0)
{
res->tm_mon -= 1;
if (res->tm_mon < 0)
{
res->tm_mon = 11;
res->tm_year -= 1;
res->tm_yday = 364 + isleap(res->tm_year + 1900);
}
res->tm_mday = ip[res->tm_mon];
}
}
TZ_UNLOCK;
}
else
res->tm_isdst = 0;
return (res);
}
int
_DEFUN (__tzcalc_limits, (year),
int year)
{
int days, year_days, years;
int i, j;
__tzinfo_type *tz = __gettzinfo ();
if (year < EPOCH_YEAR)
return 0;
tz->__tzyear = year;
years = (year - EPOCH_YEAR);
year_days = years * 365 +
(years - 1 + EPOCH_YEARS_SINCE_LEAP) / 4 - (years - 1 + EPOCH_YEARS_SINCE_CENTURY) / 100 +
(years - 1 + EPOCH_YEARS_SINCE_LEAP_CENTURY) / 400;
for (i = 0; i < 2; ++i)
{
if (tz->__tzrule[i].ch == 'J') {
/* The Julian day n (1 <= n <= 365). */
days = year_days + tz->__tzrule[i].d +
(isleap(year) && tz->__tzrule[i].d >= 60);
/* Convert to yday */
--days;
} else if (tz->__tzrule[i].ch == 'D')
days = year_days + tz->__tzrule[i].d;
else
{
int yleap = isleap(year);
int m_day, m_wday, wday_diff;
_CONST int *ip = mon_lengths[yleap];
days = year_days;
for (j = 1; j < tz->__tzrule[i].m; ++j)
days += ip[j-1];
m_wday = (EPOCH_WDAY + days) % DAYSPERWEEK;
wday_diff = tz->__tzrule[i].d - m_wday;
if (wday_diff < 0)
wday_diff += DAYSPERWEEK;
m_day = (tz->__tzrule[i].n - 1) * DAYSPERWEEK + wday_diff;
while (m_day >= ip[j-1])
m_day -= DAYSPERWEEK;
days += m_day;
}
/* store the change-over time in GMT form by adding offset */
tz->__tzrule[i].change = days * SECSPERDAY +
tz->__tzrule[i].s + tz->__tzrule[i].offset;
}
tz->__tznorth = (tz->__tzrule[0].change < tz->__tzrule[1].change);
return 1;
}