common: wall_clock: Utilize constants for ms, us, and ns ratios
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@ -73,8 +73,8 @@ std::unique_ptr<WallClock> CreateBestMatchingClock(u32 emulated_cpu_frequency,
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rtsc_frequency = EstimateRDTSCFrequency();
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}
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// Fallback to StandardWallClock if rtsc period is higher than a nano second
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if (rtsc_frequency <= 1000000000) {
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// Fallback to StandardWallClock if the hardware TSC does not have nanosecond precision.
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if (rtsc_frequency <= WallClock::NS_RATIO) {
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return std::make_unique<StandardWallClock>(emulated_cpu_frequency,
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emulated_clock_frequency);
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} else {
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@ -13,6 +13,10 @@ namespace Common {
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class WallClock {
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public:
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static constexpr u64 NS_RATIO = 1'000'000'000;
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static constexpr u64 US_RATIO = 1'000'000;
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static constexpr u64 MS_RATIO = 1'000;
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virtual ~WallClock() = default;
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/// Returns current wall time in nanoseconds
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@ -47,9 +47,9 @@ NativeClock::NativeClock(u64 emulated_cpu_frequency_, u64 emulated_clock_frequen
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_mm_mfence();
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time_point.inner.last_measure = __rdtsc();
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time_point.inner.accumulated_ticks = 0U;
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ns_rtsc_factor = GetFixedPoint64Factor(1000000000, rtsc_frequency);
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us_rtsc_factor = GetFixedPoint64Factor(1000000, rtsc_frequency);
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ms_rtsc_factor = GetFixedPoint64Factor(1000, rtsc_frequency);
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ns_rtsc_factor = GetFixedPoint64Factor(NS_RATIO, rtsc_frequency);
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us_rtsc_factor = GetFixedPoint64Factor(US_RATIO, rtsc_frequency);
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ms_rtsc_factor = GetFixedPoint64Factor(MS_RATIO, rtsc_frequency);
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clock_rtsc_factor = GetFixedPoint64Factor(emulated_clock_frequency, rtsc_frequency);
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cpu_rtsc_factor = GetFixedPoint64Factor(emulated_cpu_frequency, rtsc_frequency);
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}
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