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206 lines
4 KiB
C++
206 lines
4 KiB
C++
#ifndef _MxStopWatch_h
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#define _MxStopWatch_h
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#include "assert.h"
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#include <limits.h> // ULONG_MAX
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#include <math.h>
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#include <windows.h>
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//////////////////////////////////////////////////////////////////////////////
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//
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// MxStopWatch
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//
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// NOTE: MxStopWatch measures elapsed (wall clock) time.
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//
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#define HUGE_VAL_IMMEDIATE 1.7976931348623157e+308
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// SIZE 0x18
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class MxStopWatch {
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public:
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MxStopWatch();
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~MxStopWatch() {}
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void Start();
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void Stop();
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void Reset();
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double ElapsedSeconds() const;
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protected:
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unsigned long TicksPerSeconds() const;
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private:
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LARGE_INTEGER m_startTick; // 0x00
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// ??? when we provide LARGE_INTEGER arithmetic, use a
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// LARGE_INTEGER m_elapsedTicks rather than m_elapsedSeconds
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double m_elapsedSeconds; // 0x0c
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unsigned long m_ticksPerSeconds; // 0x14
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};
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// FUNCTION: BETA10 0x100d8ba0
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inline MxStopWatch::MxStopWatch()
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{
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Reset();
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m_ticksPerSeconds = TicksPerSeconds();
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}
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// FUNCTION: BETA10 0x100d8be0
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inline void MxStopWatch::Start()
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{
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QueryPerformanceCounter(&m_startTick);
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}
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// FUNCTION: BETA10 0x100d8f50
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inline void MxStopWatch::Stop()
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{
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LARGE_INTEGER endTick;
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BOOL result;
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result = QueryPerformanceCounter(&endTick);
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assert(result);
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if (endTick.HighPart != m_startTick.HighPart) {
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// LARGE_INTEGER arithmetic not yet provided
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m_elapsedSeconds = HUGE_VAL_IMMEDIATE;
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}
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else {
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m_elapsedSeconds += ((endTick.LowPart - m_startTick.LowPart) / (double) m_ticksPerSeconds);
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}
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}
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// FUNCTION: BETA10 0x100d8c10
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inline void MxStopWatch::Reset()
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{
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m_startTick.LowPart = 0;
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m_startTick.HighPart = 0;
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m_elapsedSeconds = 0;
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}
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// FUNCTION: BETA10 0x100d8c60
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inline unsigned long MxStopWatch::TicksPerSeconds() const
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{
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LARGE_INTEGER ticksPerSeconds;
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BOOL result;
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result = QueryPerformanceFrequency(&ticksPerSeconds);
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assert(result);
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if (ticksPerSeconds.HighPart) {
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// LARGE_INTEGER arithmetic not yet provided
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// timer is too fast (faster than 32bits/s, i.e. faster than 4GHz)
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return ULONG_MAX;
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}
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else {
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return ticksPerSeconds.LowPart;
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}
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}
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// FUNCTION: BETA10 0x100d9020
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inline double MxStopWatch::ElapsedSeconds() const
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{
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return m_elapsedSeconds;
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}
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// SYNTHETIC: LEGO1 0x100a6fc0
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// SYNTHETIC: BETA10 0x100d8e70
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// MxStopWatch::~MxStopWatch
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//////////////////////////////////////////////////////////////////////////////
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//
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// MxFrequencyMeter
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//
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// SIZE 0x20
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class MxFrequencyMeter {
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public:
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MxFrequencyMeter();
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void StartOperation();
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void EndOperation();
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double Frequency() const;
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void Reset();
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unsigned long OperationCount() const;
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double ElapsedSeconds() const;
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void IncreaseOperationCount(unsigned long);
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private:
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unsigned long m_operationCount; // 0x00
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MxStopWatch m_stopWatch; // 0x08
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};
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//////////////////////////////////////////////////////////////////////////////
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//
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// MxFrequencyMeter implementation
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//
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// FUNCTION: BETA10 0x1017dd80
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inline MxFrequencyMeter::MxFrequencyMeter() : m_operationCount(0)
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{
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}
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// FUNCTION: BETA10 0x1017deb0
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inline void MxFrequencyMeter::StartOperation()
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{
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m_stopWatch.Start();
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}
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// FUNCTION: BETA10 0x1017df10
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inline void MxFrequencyMeter::EndOperation()
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{
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m_stopWatch.Stop();
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m_operationCount++;
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}
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inline double MxFrequencyMeter::Frequency() const
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{
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double elapsedSeconds = m_stopWatch.ElapsedSeconds();
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if (elapsedSeconds > 0) {
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return m_operationCount / elapsedSeconds;
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}
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else {
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if (m_operationCount) {
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// operations performed - no time elapsed
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return HUGE_VAL;
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}
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else {
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// no operations performed - no time elapsed
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return 0;
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}
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}
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}
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// FUNCTION: BETA10 0x1017dee0
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inline void MxFrequencyMeter::Reset()
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{
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m_stopWatch.Reset();
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m_operationCount = 0;
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}
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inline unsigned long MxFrequencyMeter::OperationCount() const
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{
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return m_operationCount;
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}
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// FUNCTION: BETA10 0x1017df40
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inline void MxFrequencyMeter::IncreaseOperationCount(unsigned long delta)
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{
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m_operationCount += delta;
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}
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// FUNCTION: BETA10 0x1017df60
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inline double MxFrequencyMeter::ElapsedSeconds() const
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{
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return m_stopWatch.ElapsedSeconds();
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}
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// SYNTHETIC: LEGO1 0x100abd10
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// SYNTHETIC: BETA10 0x1017de40
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// MxFrequencyMeter::~MxFrequencyMeter
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#endif /* _MxStopWatch_h */
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