/* PIP - Platform Independent Primitives Timer Copyright (C) 2014 Ivan Pelipenko peri4ko@gmail.com This program is free software: you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation, either version 3 of the License, or (at your option) any later version. This program is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with this program. If not, see . */ #include "pitime.h" /*! \class PISystemTime * \brief System time * * \section PISystemTime_sec0 Synopsis * This class provide arithmetic functions for POSIX system time. * This time represents as seconds and nanosecons in integer formats. * You can take current system time with function \a currentSystemTime(), * compare times, sum or subtract two times, convert time to/from * seconds, milliseconds, microseconds or nanoseconds. * \section PISystemTime_sec1 Example * \snippet pitimer.cpp system_time */ bool operator ==(const PITime & t0, const PITime & t1) { return (t0.hours == t1.hours && t0.minutes == t1.minutes && t0.seconds == t1.seconds); } bool operator <(const PITime & t0, const PITime & t1) { if (t0.hours == t1.hours) { if (t0.minutes == t1.minutes) { return t0.seconds < t1.seconds; } else return t0.minutes < t1.minutes; } else return t0.hours < t1.hours; } bool operator >(const PITime & t0, const PITime & t1) { if (t0.hours == t1.hours) { if (t0.minutes == t1.minutes) { return t0.seconds > t1.seconds; } else return t0.minutes > t1.minutes; } else return t0.hours > t1.hours; } bool operator ==(const PIDate & t0, const PIDate & t1) { return (t0.year == t1.year && t0.month == t1.month && t0.day == t1.day); } bool operator <(const PIDate & t0, const PIDate & t1) { if (t0.year == t1.year) { if (t0.month == t1.month) { return t0.day < t1.day; } else return t0.month < t1.month; } else return t0.year < t1.year; } bool operator >(const PIDate & t0, const PIDate & t1) { if (t0.year == t1.year) { if (t0.month == t1.month) { return t0.day > t1.day; } else return t0.month > t1.month; } else return t0.year > t1.year; } bool operator ==(const PIDateTime & t0, const PIDateTime & t1) { return (t0.year == t1.year && t0.month == t1.month && t0.day == t1.day && t0.hours == t1.hours && t0.minutes == t1.minutes && t0.seconds == t1.seconds); } bool operator <(const PIDateTime & t0, const PIDateTime & t1) { if (t0.year == t1.year) { if (t0.month == t1.month) { if (t0.day == t1.day) { if (t0.hours == t1.hours) { if (t0.minutes == t1.minutes) { return t0.seconds < t1.seconds; } else return t0.minutes < t1.minutes; } else return t0.hours < t1.hours; } else return t0.day < t1.day; } else return t0.month < t1.month; } else return t0.year < t1.year; } bool operator >(const PIDateTime & t0, const PIDateTime & t1) { if (t0.year == t1.year) { if (t0.month == t1.month) { if (t0.day == t1.day) { if (t0.hours == t1.hours) { if (t0.minutes == t1.minutes) { return t0.seconds > t1.seconds; } else return t0.minutes > t1.minutes; } else return t0.hours > t1.hours; } else return t0.day > t1.day; } else return t0.month > t1.month; } else return t0.year > t1.year; } PITime PITime::current() { time_t rt = time(0); tm * pt = localtime(&rt); PITime t; t.seconds = pt->tm_sec; t.minutes = pt->tm_min; t.hours = pt->tm_hour; return t; } PIDate PIDate::current() { time_t rt = time(0); tm * pt = localtime(&rt); PIDate d; d.day = pt->tm_mday; d.month = pt->tm_mon + 1; d.year = pt->tm_year + 1900; return d; } PIDateTime PIDateTime::current() { time_t rt = time(0); tm * pt = localtime(&rt); PIDateTime dt; dt.milliseconds = 0; dt.seconds = pt->tm_sec; dt.minutes = pt->tm_min; dt.hours = pt->tm_hour; dt.day = pt->tm_mday; dt.month = pt->tm_mon + 1; dt.year = pt->tm_year + 1900; return dt; } PISystemTime PISystemTime::current() { #ifdef WINDOWS FILETIME ft, sft; GetSystemTimeAsFileTime(&ft); sft.dwHighDateTime = ft.dwHighDateTime - __pi_ftjan1970.dwHighDateTime; if (ft.dwLowDateTime < __pi_ftjan1970.dwLowDateTime) { sft.dwLowDateTime = ft.dwLowDateTime + (0xFFFFFFFF - __pi_ftjan1970.dwLowDateTime); sft.dwHighDateTime++; } else sft.dwLowDateTime = ft.dwLowDateTime - __pi_ftjan1970.dwLowDateTime; ullong lt = ullong(sft.dwHighDateTime) * 0x100000000U + ullong(sft.dwLowDateTime); return PISystemTime(lt / 10000000U, (lt % 10000000U) * 100U); //long t_cur = GetCurrentTime(); //return PISystemTime(t_cur / 1000, (t_cur % 1000) * 1000000); #else # ifdef MAC_OS mach_timespec_t t_cur; clock_get_time(__pi_mac_clock, &t_cur); # else timespec t_cur; clock_gettime(0, &t_cur); # endif return PISystemTime(t_cur.tv_sec, t_cur.tv_nsec); #endif } PIString PITime::toString(const PIString & format) const { PIString ts = format; ts.replace("hh", PIString::fromNumber(hours).expandLeftTo(2, '0')); ts.replace("h", PIString::fromNumber(hours)); ts.replace("mm", PIString::fromNumber(minutes).expandLeftTo(2, '0')); ts.replace("m", PIString::fromNumber(minutes)); ts.replace("ss", PIString::fromNumber(seconds).expandLeftTo(2, '0')); ts.replace("s", PIString::fromNumber(seconds)); ts.replace("zzz", PIString::fromNumber(milliseconds).expandLeftTo(3, '0')); ts.replace("zz", PIString::fromNumber(milliseconds).expandLeftTo(2, '0')); ts.replace("z", PIString::fromNumber(milliseconds)); return ts; } PIString PIDate::toString(const PIString & format) const { PIString ts = format; ts.replace("yyyy", PIString::fromNumber(year).expandLeftTo(4, '0')); ts.replace("yy", PIString::fromNumber(year).right(2)); ts.replace("y", PIString::fromNumber(year).right(1)); ts.replace("MM", PIString::fromNumber(month).expandLeftTo(2, '0')); ts.replace("M", PIString::fromNumber(month)); ts.replace("dd", PIString::fromNumber(day).expandLeftTo(2, '0')); ts.replace("d", PIString::fromNumber(day)); return ts; } PIString PIDateTime::toString(const PIString & format) const { PIString ts = format; ts.replace("yyyy", PIString::fromNumber(year).expandLeftTo(4, '0')); ts.replace("yy", PIString::fromNumber(year).right(2)); ts.replace("y", PIString::fromNumber(year).right(1)); ts.replace("MM", PIString::fromNumber(month).expandLeftTo(2, '0')); ts.replace("M", PIString::fromNumber(month)); ts.replace("dd", PIString::fromNumber(day).expandLeftTo(2, '0')); ts.replace("d", PIString::fromNumber(day)); ts.replace("hh", PIString::fromNumber(hours).expandLeftTo(2, '0')); ts.replace("h", PIString::fromNumber(hours)); ts.replace("mm", PIString::fromNumber(minutes).expandLeftTo(2, '0')); ts.replace("m", PIString::fromNumber(minutes)); ts.replace("ss", PIString::fromNumber(seconds).expandLeftTo(2, '0')); ts.replace("s", PIString::fromNumber(seconds)); ts.replace("zzz", PIString::fromNumber(milliseconds).expandLeftTo(3, '0')); ts.replace("zz", PIString::fromNumber(milliseconds).expandLeftTo(2, '0')); ts.replace("z", PIString::fromNumber(milliseconds)); return ts; } time_t PIDateTime::toSecondSinceEpoch() const { tm pt; pt.tm_sec = seconds; pt.tm_min = minutes; pt.tm_hour = hours; pt.tm_mday = day; pt.tm_mon = month - 1; pt.tm_year = year - 1900; return mktime(&pt); } PIDateTime PIDateTime::fromSecondSinceEpoch(const time_t sec) { tm * pt = localtime(&sec); PIDateTime dt; dt.seconds = pt->tm_sec; dt.minutes = pt->tm_min; dt.hours = pt->tm_hour; dt.day = pt->tm_mday; dt.month = pt->tm_mon + 1; dt.year = pt->tm_year + 1900; return dt; } PIString time2string(const PITime & time, const PIString & format) { PIString ts = format; ts.replace("hh", PIString::fromNumber(time.hours).expandLeftTo(2, '0')); ts.replace("h", PIString::fromNumber(time.hours)); ts.replace("mm", PIString::fromNumber(time.minutes).expandLeftTo(2, '0')); ts.replace("m", PIString::fromNumber(time.minutes)); ts.replace("ss", PIString::fromNumber(time.seconds).expandLeftTo(2, '0')); ts.replace("s", PIString::fromNumber(time.seconds)); return ts; } PIString date2string(const PIDate & date, const PIString & format) { PIString ts = format; ts.replace("yyyy", PIString::fromNumber(date.year).expandLeftTo(4, '0')); ts.replace("yy", PIString::fromNumber(date.year).right(2)); ts.replace("y", PIString::fromNumber(date.year).right(1)); ts.replace("MM", PIString::fromNumber(date.month).expandLeftTo(2, '0')); ts.replace("M", PIString::fromNumber(date.month)); ts.replace("dd", PIString::fromNumber(date.day).expandLeftTo(2, '0')); ts.replace("d", PIString::fromNumber(date.day)); return ts; } PIString datetime2string(const PIDateTime & date, const PIString & format) { PIString ts = format; ts.replace("hh", PIString::fromNumber(date.hours).expandLeftTo(2, '0')); ts.replace("h", PIString::fromNumber(date.hours)); ts.replace("mm", PIString::fromNumber(date.minutes).expandLeftTo(2, '0')); ts.replace("m", PIString::fromNumber(date.minutes)); ts.replace("ss", PIString::fromNumber(date.seconds).expandLeftTo(2, '0')); ts.replace("s", PIString::fromNumber(date.seconds)); ts.replace("yyyy", PIString::fromNumber(date.year).expandLeftTo(4, '0')); ts.replace("yy", PIString::fromNumber(date.year).right(2)); ts.replace("y", PIString::fromNumber(date.year).right(1)); ts.replace("MM", PIString::fromNumber(date.month).expandLeftTo(2, '0')); ts.replace("M", PIString::fromNumber(date.month)); ts.replace("dd", PIString::fromNumber(date.day).expandLeftTo(2, '0')); ts.replace("d", PIString::fromNumber(date.day)); return ts; }