346 lines
8.1 KiB
C++
346 lines
8.1 KiB
C++
/**
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* @file lldate.cpp
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* @author Phoenix
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* @date 2006-02-05
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* @brief Implementation of the date class
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*
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* $LicenseInfo:firstyear=2006&license=viewergpl$
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*
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* Copyright (c) 2006-2009, Linden Research, Inc.
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*
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* Second Life Viewer Source Code
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* The source code in this file ("Source Code") is provided by Linden Lab
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* to you under the terms of the GNU General Public License, version 2.0
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* ("GPL"), unless you have obtained a separate licensing agreement
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* ("Other License"), formally executed by you and Linden Lab. Terms of
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* the GPL can be found in doc/GPL-license.txt in this distribution, or
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* online at http://secondlifegrid.net/programs/open_source/licensing/gplv2
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*
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* There are special exceptions to the terms and conditions of the GPL as
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* it is applied to this Source Code. View the full text of the exception
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* in the file doc/FLOSS-exception.txt in this software distribution, or
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* online at
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* http://secondlifegrid.net/programs/open_source/licensing/flossexception
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*
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* By copying, modifying or distributing this software, you acknowledge
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* that you have read and understood your obligations described above,
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* and agree to abide by those obligations.
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*
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* ALL LINDEN LAB SOURCE CODE IS PROVIDED "AS IS." LINDEN LAB MAKES NO
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* WARRANTIES, EXPRESS, IMPLIED OR OTHERWISE, REGARDING ITS ACCURACY,
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* COMPLETENESS OR PERFORMANCE.
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* $/LicenseInfo$
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*/
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#include "linden_common.h"
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#include "lldate.h"
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#include "apr_time.h"
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#include <time.h>
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#include <locale.h>
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#include <string>
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#include <iomanip>
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#include <sstream>
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#include "llfasttimer.h"
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#include "lltimer.h"
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#include "llstring.h"
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static const F64 DATE_EPOCH = 0.0;
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static const F64 LL_APR_USEC_PER_SEC = 1000000.0;
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// should be APR_USEC_PER_SEC, but that relies on INT64_C which
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// isn't defined in glib under our build set up for some reason
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LLDate::LLDate() : mSecondsSinceEpoch(DATE_EPOCH)
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{
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}
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LLDate::LLDate(const LLDate& date) :
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mSecondsSinceEpoch(date.mSecondsSinceEpoch)
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{
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}
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LLDate::LLDate(F64 seconds_since_epoch) :
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mSecondsSinceEpoch(seconds_since_epoch)
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{
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}
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LLDate::LLDate(const std::string& iso8601_date)
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{
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if(!fromString(iso8601_date))
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{
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llwarns << "date " << iso8601_date << " failed to parse; "
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<< "ZEROING IT OUT" << llendl;
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mSecondsSinceEpoch = DATE_EPOCH;
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}
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}
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std::string LLDate::asString() const
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{
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std::ostringstream stream;
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toStream(stream);
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return stream.str();
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}
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//@ brief Converts time in seconds since EPOCH
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// to RFC 1123 compliant date format
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// E.g. 1184797044.037586 == Wednesday, 18 Jul 2007 22:17:24 GMT
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// in RFC 1123. HTTP dates are always in GMT and RFC 1123
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// is one of the standards used and the prefered format
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std::string LLDate::asRFC1123() const
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{
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return toHTTPDateString (std::string ("%A, %d %b %Y %H:%M:%S GMT"));
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}
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LLFastTimer::DeclareTimer FT_DATE_FORMAT("Date Format");
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std::string LLDate::toHTTPDateString (std::string fmt) const
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{
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LLFastTimer ft1(FT_DATE_FORMAT);
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time_t locSeconds = (time_t) mSecondsSinceEpoch;
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struct tm * gmt = gmtime (&locSeconds);
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return toHTTPDateString(gmt, fmt);
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}
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std::string LLDate::toHTTPDateString (tm * gmt, std::string fmt)
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{
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LLFastTimer ft1(FT_DATE_FORMAT);
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// avoid calling setlocale() unnecessarily - it's expensive.
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static std::string prev_locale = "";
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std::string this_locale = LLStringUtil::getLocale();
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if (this_locale != prev_locale)
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{
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setlocale(LC_TIME, this_locale.c_str());
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prev_locale = this_locale;
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}
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// use strftime() as it appears to be faster than std::time_put
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char buffer[128];
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strftime(buffer, 128, fmt.c_str(), gmt);
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std::string res(buffer);
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#if LL_WINDOWS
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// Convert from locale-dependant charset to UTF-8 (EXT-8524).
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res = ll_convert_string_to_utf8_string(res);
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#endif
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return res;
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}
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void LLDate::toStream(std::ostream& s) const
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{
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apr_time_t time = (apr_time_t)(mSecondsSinceEpoch * LL_APR_USEC_PER_SEC);
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apr_time_exp_t exp_time;
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if (apr_time_exp_gmt(&exp_time, time) != APR_SUCCESS)
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{
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s << "1970-01-01T00:00:00Z";
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return;
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}
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s << std::dec << std::setfill('0');
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#if( LL_WINDOWS || __GNUC__ > 2)
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s << std::right;
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#else
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s.setf(ios::right);
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#endif
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s << std::setw(4) << (exp_time.tm_year + 1900)
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<< '-' << std::setw(2) << (exp_time.tm_mon + 1)
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<< '-' << std::setw(2) << (exp_time.tm_mday)
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<< 'T' << std::setw(2) << (exp_time.tm_hour)
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<< ':' << std::setw(2) << (exp_time.tm_min)
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<< ':' << std::setw(2) << (exp_time.tm_sec);
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if (exp_time.tm_usec > 0)
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{
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s << '.' << std::setw(2)
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<< (int)(exp_time.tm_usec / (LL_APR_USEC_PER_SEC / 100));
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}
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s << 'Z'
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<< std::setfill(' ');
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}
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bool LLDate::split(S32 *year, S32 *month, S32 *day, S32 *hour, S32 *min, S32 *sec) const
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{
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apr_time_t time = (apr_time_t)(mSecondsSinceEpoch * LL_APR_USEC_PER_SEC);
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apr_time_exp_t exp_time;
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if (apr_time_exp_gmt(&exp_time, time) != APR_SUCCESS)
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{
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return false;
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}
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if (year)
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*year = exp_time.tm_year + 1900;
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if (month)
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*month = exp_time.tm_mon + 1;
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if (day)
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*day = exp_time.tm_mday;
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if (hour)
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*hour = exp_time.tm_hour;
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if (min)
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*min = exp_time.tm_min;
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if (sec)
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*sec = exp_time.tm_sec;
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return true;
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}
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bool LLDate::fromString(const std::string& iso8601_date)
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{
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std::istringstream stream(iso8601_date);
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return fromStream(stream);
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}
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bool LLDate::fromStream(std::istream& s)
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{
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struct apr_time_exp_t exp_time;
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apr_int32_t tm_part;
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int c;
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s >> tm_part;
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exp_time.tm_year = tm_part - 1900;
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c = s.get(); // skip the hypen
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if (c != '-') { return false; }
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s >> tm_part;
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exp_time.tm_mon = tm_part - 1;
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c = s.get(); // skip the hypen
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if (c != '-') { return false; }
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s >> tm_part;
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exp_time.tm_mday = tm_part;
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c = s.get(); // skip the T
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if (c != 'T') { return false; }
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s >> tm_part;
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exp_time.tm_hour = tm_part;
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c = s.get(); // skip the :
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if (c != ':') { return false; }
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s >> tm_part;
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exp_time.tm_min = tm_part;
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c = s.get(); // skip the :
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if (c != ':') { return false; }
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s >> tm_part;
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exp_time.tm_sec = tm_part;
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// zero out the unused fields
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exp_time.tm_usec = 0;
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exp_time.tm_wday = 0;
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exp_time.tm_yday = 0;
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exp_time.tm_isdst = 0;
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exp_time.tm_gmtoff = 0;
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// generate a time_t from that
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apr_time_t time;
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if (apr_time_exp_gmt_get(&time, &exp_time) != APR_SUCCESS)
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{
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return false;
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}
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F64 seconds_since_epoch = time / LL_APR_USEC_PER_SEC;
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// check for fractional
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c = s.peek();
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if(c == '.')
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{
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F64 fractional = 0.0;
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s >> fractional;
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seconds_since_epoch += fractional;
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}
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c = s.peek(); // check for offset
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if (c == '+' || c == '-')
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{
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S32 offset_sign = (c == '+') ? 1 : -1;
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S32 offset_hours = 0;
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S32 offset_minutes = 0;
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S32 offset_in_seconds = 0;
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s >> offset_hours;
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c = s.get(); // skip the colon a get the minutes if there are any
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if (c == ':')
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{
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s >> offset_minutes;
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}
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offset_in_seconds = (offset_hours * 60 + offset_sign * offset_minutes) * 60;
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seconds_since_epoch -= offset_in_seconds;
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}
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else if (c != 'Z') { return false; } // skip the Z
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mSecondsSinceEpoch = seconds_since_epoch;
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return true;
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}
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bool LLDate::fromYMDHMS(S32 year, S32 month, S32 day, S32 hour, S32 min, S32 sec)
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{
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struct apr_time_exp_t exp_time;
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exp_time.tm_year = year - 1900;
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exp_time.tm_mon = month - 1;
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exp_time.tm_mday = day;
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exp_time.tm_hour = hour;
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exp_time.tm_min = min;
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exp_time.tm_sec = sec;
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// zero out the unused fields
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exp_time.tm_usec = 0;
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exp_time.tm_wday = 0;
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exp_time.tm_yday = 0;
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exp_time.tm_isdst = 0;
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exp_time.tm_gmtoff = 0;
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// generate a time_t from that
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apr_time_t time;
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if (apr_time_exp_gmt_get(&time, &exp_time) != APR_SUCCESS)
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{
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return false;
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}
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mSecondsSinceEpoch = time / LL_APR_USEC_PER_SEC;
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return true;
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}
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F64 LLDate::secondsSinceEpoch() const
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{
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return mSecondsSinceEpoch;
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}
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void LLDate::secondsSinceEpoch(F64 seconds)
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{
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mSecondsSinceEpoch = seconds;
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}
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/* static */ LLDate LLDate::now()
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{
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// time() returns seconds, we want fractions of a second, which LLTimer provides --RN
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return LLDate(LLTimer::getTotalSeconds());
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}
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bool LLDate::operator<(const LLDate& rhs) const
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{
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return mSecondsSinceEpoch < rhs.mSecondsSinceEpoch;
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}
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std::ostream& operator<<(std::ostream& s, const LLDate& date)
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{
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date.toStream(s);
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return s;
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}
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std::istream& operator>>(std::istream& s, LLDate& date)
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{
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date.fromStream(s);
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return s;
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}
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