Files
CPP_Core/Core/Statistics/Frequency_Limit.h
T
2026-06-16 10:56:40 +08:00

92 lines
2.3 KiB
C++

#pragma once
#include "global.h"
template <typename Mutex_Type = std::mutex>
class Frequency_Limit_T {
public:
explicit Frequency_Limit_T(double times_per_second = 1.0)
: interval(1.0 / times_per_second),
last(std::chrono::steady_clock::now())
{}
bool test() {
using namespace std::chrono;
std::lock_guard<std::mutex> lock(mtx);
auto now = steady_clock::now();
double dt = duration_cast<microseconds>(now - last).count() * 1e-6;
if (dt >= interval) {
last = now;
return true;
}
return false;
}
private:
double interval;
std::chrono::steady_clock::time_point last;
Mutex_Type mtx;
};
using Frequency_Limit_ST = Frequency_Limit_T<Psc::Empty_Lock>;
using Frequency_Limit = Frequency_Limit_T<std::mutex>;
template <typename Mutex_Type = std::mutex>
class Frequency_Limit_Multi_T {
public:
explicit Frequency_Limit_Multi_T(double default_times_per_second = 1.0)
: default_interval_(1.0 / default_times_per_second) {}
// 单个类型的状态
struct Type_Info {
double interval{}; // 秒
std::chrono::steady_clock::time_point last;
};
// 设置某个类型的频率
void set_rate(const std::string& type, double times_per_second) {
std::lock_guard<std::mutex> lock(mtx_);
map_[type].interval = 1.0 / times_per_second;
// 注意:不重置 last,避免突发放行
}
// 测试是否允许执行
bool test(const std::string& type) {
using namespace std::chrono;
const auto now = steady_clock::now();
std::lock_guard<std::mutex> lock(mtx_);
auto& info = map_[type];
// 第一次使用该 type
if (info.interval == 0.0) {
info.interval = default_interval_;
info.last = now;
return true;
}
const double dt =
duration_cast<duration<double>>(now - info.last).count();
if (dt >= info.interval) {
info.last = now;
return true;
}
return false;
}
private:
double default_interval_;
std::map<std::string, Type_Info> map_;
Mutex_Type mtx_;
};
using Frequency_Limit_Multi_ST = Frequency_Limit_Multi_T<Psc::Empty_Lock>;
using Frequency_Limit_Multi = Frequency_Limit_Multi_T<std::mutex>;