/* * * Licensed to the Apache Software Foundation (ASF) under one * or more contributor license agreements. See the NOTICE file * distributed with this work for additional information * regarding copyright ownership. The ASF licenses this file * to you under the Apache License, Version 2.0 (the * "License"); you may not use this file except in compliance * with the License. You may obtain a copy of the License at * * http://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, * software distributed under the License is distributed on an * "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY * KIND, either express or implied. See the License for the * specific language governing permissions and limitations * under the License. * */ #include "qpid/sys/Time.h" #include #include #include #include using namespace boost::posix_time; namespace { // High-res timing support. This will display times since program start, // more or less. Keep track of the start value and the conversion factor to // seconds. bool timeInitialized = false; LARGE_INTEGER start; double freq = 1.0; } namespace qpid { namespace sys { AbsTime::AbsTime(const AbsTime& t, const Duration& d) { if (d == Duration::max()) { timepoint = ptime(max_date_time); } else { time_duration td = microseconds(d.nanosecs / 1000); timepoint = t.timepoint + td; } } AbsTime AbsTime::FarFuture() { AbsTime ff; ptime maxd(max_date_time); ff.timepoint = maxd; return ff; } AbsTime AbsTime::Epoch() { AbsTime time_epoch; time_epoch.timepoint = boost::posix_time::from_time_t(0); return time_epoch; } AbsTime AbsTime::now() { AbsTime time_now; time_now.timepoint = boost::get_system_time(); return time_now; } Duration::Duration(const AbsTime& start, const AbsTime& finish) { time_duration d = finish.timepoint - start.timepoint; nanosecs = d.total_nanoseconds(); } std::ostream& operator<<(std::ostream& o, const Duration& d) { return o << int64_t(d) << "ns"; } std::ostream& operator<<(std::ostream& o, const AbsTime& t) { std::string time_string = to_simple_string(t.timepoint); return o << time_string; } void sleep(int secs) { ::Sleep(secs * 1000); } void usleep(uint64_t usecs) { DWORD msecs = usecs / 1000; if (msecs == 0) msecs = 1; ::Sleep(msecs); } void outputFormattedNow(std::ostream& o) { ::time_t rawtime; ::tm timeinfo; char time_string[100]; ::time( &rawtime ); #ifdef _MSC_VER ::localtime_s(&timeinfo, &rawtime); #else timeinfo = *(::localtime(&rawtime)); #endif ::strftime(time_string, 100, "%Y-%m-%d %H:%M:%S", &timeinfo); o << time_string << " "; } void outputHiresNow(std::ostream& o) { if (!timeInitialized) { start.QuadPart = 0; LARGE_INTEGER iFreq; iFreq.QuadPart = 1; QueryPerformanceCounter(&start); QueryPerformanceFrequency(&iFreq); freq = static_cast(iFreq.QuadPart); timeInitialized = true; } LARGE_INTEGER iNow; iNow.QuadPart = 0; QueryPerformanceCounter(&iNow); iNow.QuadPart -= start.QuadPart; if (iNow.QuadPart < 0) iNow.QuadPart = 0; double now = static_cast(iNow.QuadPart); now /= freq; // now is seconds after this o << std::fixed << std::setprecision(8) << std::setw(16) << std::setfill('0') << now << "s "; } }}