diff options
Diffstat (limited to 'src/common/wall_clock.cpp')
-rw-r--r-- | src/common/wall_clock.cpp | 90 |
1 files changed, 35 insertions, 55 deletions
diff --git a/src/common/wall_clock.cpp b/src/common/wall_clock.cpp index ae07f2811..dc0dcbd68 100644 --- a/src/common/wall_clock.cpp +++ b/src/common/wall_clock.cpp @@ -1,96 +1,76 @@ // SPDX-FileCopyrightText: Copyright 2020 yuzu Emulator Project // SPDX-License-Identifier: GPL-2.0-or-later -#include "common/uint128.h" +#include "common/steady_clock.h" #include "common/wall_clock.h" #ifdef ARCHITECTURE_x86_64 #include "common/x64/cpu_detect.h" #include "common/x64/native_clock.h" +#include "common/x64/rdtsc.h" #endif namespace Common { -using base_timer = std::chrono::steady_clock; -using base_time_point = std::chrono::time_point<base_timer>; - class StandardWallClock final : public WallClock { public: - explicit StandardWallClock(u64 emulated_cpu_frequency_, u64 emulated_clock_frequency_) - : WallClock(emulated_cpu_frequency_, emulated_clock_frequency_, false) { - start_time = base_timer::now(); + explicit StandardWallClock() : start_time{SteadyClock::Now()} {} + + std::chrono::nanoseconds GetTimeNS() const override { + return SteadyClock::Now() - start_time; + } + + std::chrono::microseconds GetTimeUS() const override { + return static_cast<std::chrono::microseconds>(GetHostTicksElapsed() / NsToUsRatio::den); } - std::chrono::nanoseconds GetTimeNS() override { - base_time_point current = base_timer::now(); - auto elapsed = current - start_time; - return std::chrono::duration_cast<std::chrono::nanoseconds>(elapsed); + std::chrono::milliseconds GetTimeMS() const override { + return static_cast<std::chrono::milliseconds>(GetHostTicksElapsed() / NsToMsRatio::den); } - std::chrono::microseconds GetTimeUS() override { - base_time_point current = base_timer::now(); - auto elapsed = current - start_time; - return std::chrono::duration_cast<std::chrono::microseconds>(elapsed); + u64 GetCNTPCT() const override { + return GetHostTicksElapsed() * NsToCNTPCTRatio::num / NsToCNTPCTRatio::den; } - std::chrono::milliseconds GetTimeMS() override { - base_time_point current = base_timer::now(); - auto elapsed = current - start_time; - return std::chrono::duration_cast<std::chrono::milliseconds>(elapsed); + u64 GetGPUTick() const override { + return GetHostTicksElapsed() * NsToGPUTickRatio::num / NsToGPUTickRatio::den; } - u64 GetClockCycles() override { - std::chrono::nanoseconds time_now = GetTimeNS(); - const u128 temporary = - Common::Multiply64Into128(time_now.count(), emulated_clock_frequency); - return Common::Divide128On32(temporary, 1000000000).first; + u64 GetHostTicksNow() const override { + return static_cast<u64>(SteadyClock::Now().time_since_epoch().count()); } - u64 GetCPUCycles() override { - std::chrono::nanoseconds time_now = GetTimeNS(); - const u128 temporary = Common::Multiply64Into128(time_now.count(), emulated_cpu_frequency); - return Common::Divide128On32(temporary, 1000000000).first; + u64 GetHostTicksElapsed() const override { + return static_cast<u64>(GetTimeNS().count()); } - void Pause([[maybe_unused]] bool is_paused) override { - // Do nothing in this clock type. + bool IsNative() const override { + return false; } private: - base_time_point start_time; + SteadyClock::time_point start_time; }; +std::unique_ptr<WallClock> CreateOptimalClock() { #ifdef ARCHITECTURE_x86_64 - -std::unique_ptr<WallClock> CreateBestMatchingClock(u64 emulated_cpu_frequency, - u64 emulated_clock_frequency) { const auto& caps = GetCPUCaps(); - u64 rtsc_frequency = 0; - if (caps.invariant_tsc) { - rtsc_frequency = caps.tsc_frequency ? caps.tsc_frequency : EstimateRDTSCFrequency(); - } - // Fallback to StandardWallClock if the hardware TSC does not have the precision greater than: - // - A nanosecond - // - The emulated CPU frequency - // - The emulated clock counter frequency (CNTFRQ) - if (rtsc_frequency <= WallClock::NS_RATIO || rtsc_frequency <= emulated_cpu_frequency || - rtsc_frequency <= emulated_clock_frequency) { - return std::make_unique<StandardWallClock>(emulated_cpu_frequency, - emulated_clock_frequency); + if (caps.invariant_tsc && caps.tsc_frequency >= WallClock::GPUTickFreq) { + return std::make_unique<X64::NativeClock>(caps.tsc_frequency); } else { - return std::make_unique<X64::NativeClock>(emulated_cpu_frequency, emulated_clock_frequency, - rtsc_frequency); + // Fallback to StandardWallClock if the hardware TSC + // - Is not invariant + // - Is not more precise than GPUTickFreq + return std::make_unique<StandardWallClock>(); } -} - #else - -std::unique_ptr<WallClock> CreateBestMatchingClock(u64 emulated_cpu_frequency, - u64 emulated_clock_frequency) { - return std::make_unique<StandardWallClock>(emulated_cpu_frequency, emulated_clock_frequency); + return std::make_unique<StandardWallClock>(); +#endif } -#endif +std::unique_ptr<WallClock> CreateStandardWallClock() { + return std::make_unique<StandardWallClock>(); +} } // namespace Common |