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-rw-r--r--src/common/x64/native_clock.cpp95
1 files changed, 95 insertions, 0 deletions
diff --git a/src/common/x64/native_clock.cpp b/src/common/x64/native_clock.cpp
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1// Copyright 2020 yuzu Emulator Project
2// Licensed under GPLv2 or any later version
3// Refer to the license.txt file included.
4
5#include <chrono>
6#include <thread>
7
8#ifdef _MSC_VER
9#include <intrin.h>
10#else
11#include <x86intrin.h>
12#endif
13
14#include "common/uint128.h"
15#include "common/x64/native_clock.h"
16
17namespace Common {
18
19u64 EstimateRDTSCFrequency() {
20 const auto milli_10 = std::chrono::milliseconds{10};
21 // get current time
22 _mm_mfence();
23 const u64 tscStart = __rdtsc();
24 const auto startTime = std::chrono::high_resolution_clock::now();
25 // wait roughly 3 seconds
26 while (true) {
27 auto milli = std::chrono::duration_cast<std::chrono::milliseconds>(
28 std::chrono::high_resolution_clock::now() - startTime);
29 if (milli.count() >= 3000)
30 break;
31 std::this_thread::sleep_for(milli_10);
32 }
33 const auto endTime = std::chrono::high_resolution_clock::now();
34 _mm_mfence();
35 const u64 tscEnd = __rdtsc();
36 // calculate difference
37 const u64 timer_diff =
38 std::chrono::duration_cast<std::chrono::nanoseconds>(endTime - startTime).count();
39 const u64 tsc_diff = tscEnd - tscStart;
40 const u64 tsc_freq = MultiplyAndDivide64(tsc_diff, 1000000000ULL, timer_diff);
41 return tsc_freq;
42}
43
44namespace X64 {
45NativeClock::NativeClock(u64 emulated_cpu_frequency, u64 emulated_clock_frequency,
46 u64 rtsc_frequency)
47 : WallClock(emulated_cpu_frequency, emulated_clock_frequency, true), rtsc_frequency{
48 rtsc_frequency} {
49 _mm_mfence();
50 last_measure = __rdtsc();
51 accumulated_ticks = 0U;
52}
53
54u64 NativeClock::GetRTSC() {
55 rtsc_serialize.lock();
56 _mm_mfence();
57 const u64 current_measure = __rdtsc();
58 u64 diff = current_measure - last_measure;
59 diff = diff & ~static_cast<u64>(static_cast<s64>(diff) >> 63); // max(diff, 0)
60 if (current_measure > last_measure) {
61 last_measure = current_measure;
62 }
63 accumulated_ticks += diff;
64 rtsc_serialize.unlock();
65 return accumulated_ticks;
66}
67
68std::chrono::nanoseconds NativeClock::GetTimeNS() {
69 const u64 rtsc_value = GetRTSC();
70 return std::chrono::nanoseconds{MultiplyAndDivide64(rtsc_value, 1000000000, rtsc_frequency)};
71}
72
73std::chrono::microseconds NativeClock::GetTimeUS() {
74 const u64 rtsc_value = GetRTSC();
75 return std::chrono::microseconds{MultiplyAndDivide64(rtsc_value, 1000000, rtsc_frequency)};
76}
77
78std::chrono::milliseconds NativeClock::GetTimeMS() {
79 const u64 rtsc_value = GetRTSC();
80 return std::chrono::milliseconds{MultiplyAndDivide64(rtsc_value, 1000, rtsc_frequency)};
81}
82
83u64 NativeClock::GetClockCycles() {
84 const u64 rtsc_value = GetRTSC();
85 return MultiplyAndDivide64(rtsc_value, emulated_clock_frequency, rtsc_frequency);
86}
87
88u64 NativeClock::GetCPUCycles() {
89 const u64 rtsc_value = GetRTSC();
90 return MultiplyAndDivide64(rtsc_value, emulated_cpu_frequency, rtsc_frequency);
91}
92
93} // namespace X64
94
95} // namespace Common