// @file timer.h /* Copyright 2010 10gen Inc. * * Licensed 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. */ #pragma once #include "time_support.h" namespace mongo { /** * simple scoped timer */ class Timer /*copyable*/ { public: Timer() { reset(); } Timer( unsigned long long startMicros ) { old = startMicros; } int seconds() const { return (int)(micros() / 1000000); } int millis() const { return (int)(micros() / 1000); } int minutes() const { return seconds() / 60; } /** gets time interval and resets at the same time. this way we can call curTimeMicros once instead of twice if one wanted millis() and then reset(). @return time in millis */ int millisReset() { unsigned long long now = curTimeMicros64(); int m = (int)((now-old)/1000); old = now; return m; } // note: dubious that the resolution is as anywhere near as high as ethod name implies! unsigned long long micros() const { unsigned long long n = curTimeMicros64(); return n - old; } unsigned long long micros(unsigned long long & n) const { // returns cur time in addition to timer result n = curTimeMicros64(); return n - old; } unsigned long long startTime() const { return old; } void reset() { old = curTimeMicros64(); } private: unsigned long long old; }; #if 1 class DevTimer { public: class scoped { public: scoped(DevTimer& dt) { } ~scoped() { } }; DevTimer(string) { } ~DevTimer() { } }; #elif defined(_WIN32) class DevTimer { const string _name; public: unsigned long long _ticks; class scoped { DevTimer& _dt; unsigned long long _start; public: scoped(DevTimer& dt) : _dt(dt) { LARGE_INTEGER i; QueryPerformanceCounter(&i); _start = i.QuadPart; } ~scoped() { LARGE_INTEGER i; QueryPerformanceCounter(&i); _dt._ticks += (i.QuadPart - _start); } }; DevTimer(string name) : _name(name), _ticks(0) { } ~DevTimer() { LARGE_INTEGER freq; assert( QueryPerformanceFrequency(&freq) ); cout << "devtimer\t" << _name << '\t' << _ticks*1000.0/freq.QuadPart << "ms" << endl; } }; #endif } // namespace mongo