Add Posix functions for porting compatibility. Fix compliance issues with ISO/IEC 9899:199409 New Functions: setenv(), fparseln(), GetFileNameFromPath(), rename(), realpath(), setprogname(), getprogname(), strlcat(), strlcpy(), strsep(), setitimer(), getitimer(), timegm(), getopt(), basename(), mkstemp(), ffs(), vsnprintf(), snprintf(), getpass(), usleep(), select(), writev(), strcasecmp(), getcwd(), chdir(), tcgetpgrp(), getpgrp(), gettimeofday(), bcopy(), git-svn-id: https://edk2.svn.sourceforge.net/svnroot/edk2/trunk/edk2@12061 6f19259b-4bc3-4df7-8a09-765794883524
		
			
				
	
	
		
			379 lines
		
	
	
		
			18 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			379 lines
		
	
	
		
			18 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/** @file
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    The header <time.h> defines two macros, and declares several types and
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    functions for manipulating time.  Many functions deal with a calendar time
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    that represents the current date (according to the Gregorian calendar) and
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    time.  Some functions deal with local time, which is the calendar time
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    expressed for some specific time zone, and with Daylight Saving Time, which
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    is a temporary change in the algorithm for determining local time.  The local
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    time zone and Daylight Saving Time are implementation-defined.
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    The macros defined are NULL; and CLOCKS_PER_SEC which expands to an
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    expression with type clock_t (described below) that is the number per second
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    of the value returned by the clock function.
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    The types declared are size_t along with clock_t and time_t which are
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    arithmetic types capable of representing times; and struct tm which holds
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    the components of a calendar time, called the broken-down time.
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    The range and precision of times representable in clock_t and time_t are
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    implementation-defined. The tm structure shall contain at least the following
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    members, in any order.  The semantics of the members and their normal ranges
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    are expressed in the comments.
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      - int tm_sec;   // seconds after the minute - [0, 60]
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      - int tm_min;   // minutes after the hour - [0, 59]
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      - int tm_hour;  // hours since midnight - [0, 23]
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      - int tm_mday;  // day of the month - [1, 31]
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      - int tm_mon;   // months since January - [0, 11]
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      - int tm_year;  // years since 1900
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      - int tm_wday;  // days since Sunday - [0, 6]
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      - int tm_yday;  // days since January 1 - [0, 365]
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      - int tm_isdst; // Daylight Saving Time flag
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    The value of tm_isdst is positive if Daylight Saving Time is in effect, zero
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    if Daylight Saving Time is not in effect, and negative if the information
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    is not available.
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    Copyright (c) 2010 - 2011, Intel Corporation. All rights reserved.<BR>
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    This program and the accompanying materials are licensed and made available under
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    the terms and conditions of the BSD License that accompanies this distribution.
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    The full text of the license may be found at
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    http://opensource.org/licenses/bsd-license.
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    THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,
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    WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.
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**/
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#ifndef _TIME_H
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#define _TIME_H
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#include <sys/EfiCdefs.h>
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#define CLOCKS_PER_SEC  __getCPS()
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#ifdef _EFI_SIZE_T_
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  typedef _EFI_SIZE_T_  size_t;
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  #undef _EFI_SIZE_T_
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  #undef _BSD_SIZE_T_
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#endif
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/** An arithmetic type capable of representing values returned by clock(); **/
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#ifdef _EFI_CLOCK_T
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  typedef _EFI_CLOCK_T  clock_t;
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  #undef _EFI_CLOCK_T
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#endif
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/** An arithmetic type capable of representing values returned as calendar time
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    values, such as that returned by mktime();
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**/
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#ifdef _EFI_TIME_T
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  typedef _EFI_TIME_T  time_t;
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  #undef _EFI_TIME_T
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#endif
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/** Value added to tm_year to get the full year value.  TM_YEAR_BASE + 110 --> 2010
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**/
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#define TM_YEAR_BASE  1900
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/** Values for the tm_wday member of struct tm.
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  @{
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**/
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#define TM_SUNDAY     0
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#define TM_MONDAY     1
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#define TM_TUESDAY    2
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#define TM_WEDNESDAY  3
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#define TM_THURSDAY   4
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#define TM_FRIDAY     5
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#define TM_SATURDAY   6
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/** @}  **/
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/** Values for the tm_mon member of struct tm.
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  @{
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**/
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#define TM_JANUARY     0
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#define TM_FEBRUARY    1
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#define TM_MARCH       2
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#define TM_APRIL       3
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#define TM_MAY         4
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#define TM_JUNE        5
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#define TM_JULY        6
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#define TM_AUGUST      7
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#define TM_SEPTEMBER   8
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#define TM_OCTOBER     9
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#define TM_NOVEMBER   10
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#define TM_DECEMBER   11
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/** @}  **/
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/** A structure holding the components of a calendar time, called the
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    broken-down time.  The first nine (9) members are as mandated by the
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    C95 standard.  Additional fields have been added for EFI support.
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**/
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struct tm {
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  int     tm_year;      // years since 1900
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  int     tm_mon;       // months since January  [0, 11]
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  int     tm_mday;      // day of the month  [1, 31]
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  int     tm_hour;      // hours since midnight  [0, 23]
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  int     tm_min;       // minutes after the hour  [0, 59]
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  int     tm_sec;       // seconds after the minute  [0, 60]
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  int     tm_wday;      // days since Sunday  [0, 6]
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  int     tm_yday;      // days since January 1  [0, 365]
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  int     tm_isdst;     // Daylight Saving Time flag
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  int     tm_zoneoff;   // EFI TimeZone offset, -1440 to 1440 or 2047
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  int     tm_daylight;  // EFI Daylight flags
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  UINT32  tm_Nano;      // EFI Nanosecond value
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};
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/* ###############  Time Manipulation Functions  ########################## */
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/** The clock function determines the processor time used.
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    @return   The clock function returns the implementation's best
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              approximation to the processor time used by the program since the
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              beginning of an implementation-defined era related only to the
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              program invocation.  To determine the time in seconds, the value
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              returned by the clock function should be divided by the value of
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              the macro CLOCKS_PER_SEC.  If the processor time used is not
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              available or its value cannot be represented, the function
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              returns the value (clock_t)(-1).
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              On IA32 or X64 platforms, the value returned is the number of
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              CPU TimeStamp Counter ticks since the appliation started.
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**/
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clock_t  clock(void);
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/**
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**/
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double difftime(time_t time1, time_t time0);
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/** The mktime function converts the broken-down time, expressed as local time,
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    in the structure pointed to by timeptr into a calendar time value with the
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    same encoding as that of the values returned by the time function. The
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    original values of the tm_wday and tm_yday components of the structure are
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    ignored, and the original values of the other components are not
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    restricted to the ranges indicated above. On successful completion,
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    the values of the tm_wday and tm_yday components of the structure are set
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    appropriately, and the other components are set to represent the specified
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    calendar time, but with their values forced to the ranges indicated above;
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    the final value of tm_mday is not set until tm_mon and tm_year
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    are determined.
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    @return   The mktime function returns the specified calendar time encoded
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              as a value of type time_t. If the calendar time cannot be
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              represented, the function returns the value (time_t)(-1).
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**/
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time_t mktime(struct tm *timeptr);
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/** The time function determines the current calendar time.
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    The encoding of the value is unspecified.
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    @return   The time function returns the implementation's best approximation
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              of the current calendar time. The value (time_t)(-1) is returned
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              if the calendar time is not available. If timer is not a null
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              pointer, the return value is also assigned to the object it
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              points to.
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**/
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time_t time(time_t *timer);
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/* #################  Time Conversion Functions  ########################## */
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/** The asctime function converts the broken-down time in the structure pointed
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    to by timeptr into a string in the form
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          Sun Sep 16 01:03:52 1973\n\0
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    @return   The asctime function returns a pointer to the string.
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**/
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char * asctime(const struct tm *timeptr);
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/** The ctime function converts the calendar time pointed to by timer to local
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    time in the form of a string. It is equivalent to asctime(localtime(timer))
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    @return   The ctime function returns the pointer returned by the asctime
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              function with that broken-down time as argument.
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**/
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char * ctime(const time_t *timer);
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/** The gmtime function converts the calendar time pointed to by timer into a
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    brokendown time, expressed as UTC.
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    @return   The gmtime function returns a pointer to the broken-down time,
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              or a null pointer if the specified time cannot be converted to UTC.
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**/
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struct tm  * gmtime(const time_t *timer);
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/** The timegm function is the opposite of gmtime.
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    @return   The calendar time expressed as UTC.
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**/
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time_t timegm(struct tm*);
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/** The localtime function converts the calendar time pointed to by timer into
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    a broken-down time, expressed as local time.
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    @return   The localtime function returns a pointer to the broken-down time,
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              or a null pointer if the specified time cannot be converted to
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              local time.
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**/
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struct tm  * localtime(const time_t *timer);
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/** The strftime function places characters into the array pointed to by s as
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    controlled by the string pointed to by format. The format shall be a
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    multibyte character sequence, beginning and ending in its initial shift
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    state. The format string consists of zero or more conversion specifiers
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    and ordinary multibyte characters. A conversion specifier consists of
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    a % character, possibly followed by an E or O modifier character
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    (described below), followed by a character that determines the behavior of
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    the conversion specifier.
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    All ordinary multibyte characters (including the terminating null
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    character) are copied unchanged into the array. If copying takes place
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    between objects that overlap, the behavior is undefined. No more than
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    maxsize characters are placed into the array. 3 Each conversion specifier
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    is replaced by appropriate characters as described in the following list.
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    The appropriate characters are determined using the LC_TIME category of
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    the current locale and by the values of zero or more members of the
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    broken-down time structure pointed to by timeptr, as specified in brackets
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    in the description. If any of the specified values is outside the normal
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    range, the characters stored are unspecified.
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    %a is replaced by the locale's abbreviated weekday name. [tm_wday]
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    %A is replaced by the locale's full weekday name. [tm_wday]
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    %b is replaced by the locale's abbreviated month name. [tm_mon]
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    %B is replaced by the locale's full month name. [tm_mon]
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    %c is replaced by the locale's appropriate date and time representation.
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    %C is replaced by the year divided by 100 and truncated to an integer,
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       as a decimal number (00-99). [tm_year]
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    %d is replaced by the day of the month as a decimal number (01-31). [tm_mday]
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    %D is equivalent to "%m/%d/%y". [tm_mon, tm_mday, tm_year]
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    %e is replaced by the day of the month as a decimal number (1-31);
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       a single digit is preceded by a space. [tm_mday]
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    %F is equivalent to "%Y-%m-%d" (the ISO 8601 date format).
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       [tm_year, tm_mon, tm_mday]
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    %g is replaced by the last 2 digits of the week-based year (see below) as
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       a decimal number (00-99). [tm_year, tm_wday, tm_yday]
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    %G is replaced by the week-based year (see below) as a decimal number
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       (e.g., 1997). [tm_year, tm_wday, tm_yday]
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    %h is equivalent to "%b". [tm_mon]
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    %H is replaced by the hour (24-hour clock) as a decimal number (00-23). [tm_hour]
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    %I is replaced by the hour (12-hour clock) as a decimal number (01-12). [tm_hour]
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    %j is replaced by the day of the year as a decimal number (001-366). [tm_yday]
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    %m is replaced by the month as a decimal number (01-12). [tm_mon]
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    %M is replaced by the minute as a decimal number (00-59). [tm_min]
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    %n is replaced by a new-line character.
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    %p is replaced by the locale's equivalent of the AM/PM designations
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       associated with a 12-hour clock. [tm_hour]
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    %r is replaced by the locale's 12-hour clock time. [tm_hour, tm_min, tm_sec]
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    %R is equivalent to "%H:%M". [tm_hour, tm_min]
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    %S is replaced by the second as a decimal number (00-60). [tm_sec]
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    %t is replaced by a horizontal-tab character.
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    %T is equivalent to "%H:%M:%S" (the ISO 8601 time format).
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       [tm_hour, tm_min, tm_sec]
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    %u is replaced by the ISO 8601 weekday as a decimal number (1-7),
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       where Monday is 1. [tm_wday]
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    %U is replaced by the week number of the year (the first Sunday as the
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       first day of week 1) as a decimal number (00-53). [tm_year, tm_wday, tm_yday]
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    %V is replaced by the ISO 8601 week number (see below) as a decimal number
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       (01-53). [tm_year, tm_wday, tm_yday]
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    %w is replaced by the weekday as a decimal number (0-6), where Sunday is 0.
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       [tm_wday]
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    %W is replaced by the week number of the year (the first Monday as the
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       first day of week 1) as a decimal number (00-53). [tm_year, tm_wday, tm_yday]
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    %x is replaced by the locale's appropriate date representation.
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    %X is replaced by the locale's appropriate time representation.
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    %y is replaced by the last 2 digits of the year as a decimal
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       number (00-99). [tm_year]
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    %Y is replaced by the year as a decimal number (e.g., 1997). [tm_year]
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    %z is replaced by the offset from UTC in the ISO 8601 format "-0430"
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       (meaning 4 hours 30 minutes behind UTC, west of Greenwich), or by no
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       characters if no time zone is determinable. [tm_isdst]
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    %Z is replaced by the locale's time zone name or abbreviation, or by no
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       characters if no time zone is determinable. [tm_isdst]
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    %% is replaced by %.
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    Some conversion specifiers can be modified by the inclusion of an E or O
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    modifier character to indicate an alternative format or specification.
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    If the alternative format or specification does not exist for the current
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    locale, the modifier is ignored. %Ec is replaced by the locale's
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    alternative date and time representation.
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    %EC is replaced by the name of the base year (period) in the locale's
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        alternative representation.
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    %Ex is replaced by the locale's alternative date representation.
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    %EX is replaced by the locale's alternative time representation.
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    %Ey is replaced by the offset from %EC (year only) in the locale's
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        alternative representation.
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    %EY is replaced by the locale's full alternative year representation.
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    %Od is replaced by the day of the month, using the locale's alternative
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        numeric symbols (filled as needed with leading zeros, or with leading
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        spaces if there is no alternative symbol for zero).
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    %Oe is replaced by the day of the month, using the locale's alternative
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        numeric symbols (filled as needed with leading spaces).
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    %OH is replaced by the hour (24-hour clock), using the locale's
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        alternative numeric symbols.
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    %OI is replaced by the hour (12-hour clock), using the locale's
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        alternative numeric symbols.
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    %Om is replaced by the month, using the locale's alternative numeric symbols.
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    %OM is replaced by the minutes, using the locale's alternative numeric symbols.
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    %OS is replaced by the seconds, using the locale's alternative numeric symbols.
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    %Ou is replaced by the ISO 8601 weekday as a number in the locale's
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        alternative representation, where Monday is 1.
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    %OU is replaced by the week number, using the locale's alternative numeric symbols.
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    %OV is replaced by the ISO 8601 week number, using the locale's alternative
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        numeric symbols.
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    %Ow is replaced by the weekday as a number, using the locale's alternative
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        numeric symbols.
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    %OW is replaced by the week number of the year, using the locale's
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        alternative numeric symbols.
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    %Oy is replaced by the last 2 digits of the year, using the locale's
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        alternative numeric symbols.
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    %g, %G, and %V give values according to the ISO 8601 week-based year. In
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    this system, weeks begin on a Monday and week 1 of the year is the week
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    that includes January 4th, which is also the week that includes the first
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    Thursday of the year, and is also the first week that contains at least
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    four days in the year. If the first Monday of January is the 2nd, 3rd, or
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    4th, the preceding days are part of the last week of the preceding year;
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    thus, for Saturday 2nd January 1999, %G is replaced by 1998 and %V is
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    replaced by 53. If December 29th, 30th, or 31st is a Monday, it and any
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    following days are part of week 1 of the following year. Thus, for Tuesday
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    30th December 1997, %G is replaced by 1998 and %V is replaced by 01.
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    If a conversion specifier is not one of the above, the behavior is undefined.
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    In the "C" locale, the E and O modifiers are ignored and the replacement
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    strings for the following specifiers are:
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      %a the first three characters of %A.
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      %A one of "Sunday", "Monday", ... , "Saturday".
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      %b the first three characters of %B.
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      %B one of "January", "February", ... , "December".
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      %c equivalent to "%a %b %e %T %Y".
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      %p one of "AM" or "PM".
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      %r equivalent to "%I:%M:%S %p".
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      %x equivalent to "%m/%d/%y".
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      %X equivalent to %T.
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      %Z implementation-defined.
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    @param  s         Pointer to the buffer in which to store the result.
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    @param  maxsize   Maximum number of characters to put into buffer s.
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    @param  format    Format string, as described above.
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    @param  timeptr   Pointer to a broken-down time structure containing the
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                      time to format.
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    @return   If the total number of resulting characters including the
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              terminating null character is not more than maxsize, the
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						|
              strftime function returns the number of characters placed into
 | 
						|
              the array pointed to by s not including the terminating null
 | 
						|
              character. Otherwise, zero is returned and the contents of the
 | 
						|
              array are indeterminate.
 | 
						|
**/
 | 
						|
size_t strftime( char * __restrict s, size_t maxsize,
 | 
						|
                      const char * __restrict format,
 | 
						|
                      const struct tm * __restrict timeptr);
 | 
						|
 | 
						|
char *strptime(const char *, const char * format, struct tm*);
 | 
						|
 | 
						|
 | 
						|
/* #################  Implementation Functions  ########################### */
 | 
						|
 | 
						|
clock_t __getCPS(void);
 | 
						|
 | 
						|
#endif  /* _TIME_H */
 |