5 #ifndef HPP_FCL_TIMINGS_FWD_H
6 #define HPP_FCL_TIMINGS_FWD_H
10 #ifdef HPP_FCL_WITH_CXX11_SUPPORT
33 #ifdef HPP_FCL_WITH_CXX11_SUPPORT
34 typedef std::chrono::steady_clock clock_type;
35 typedef clock_type::duration duration_type;
42 Timer(
const bool start_on_construction =
true) : m_is_stopped(true) {
47 if (m_is_stopped)
return m_times;
50 #ifdef HPP_FCL_WITH_CXX11_SUPPORT
51 std::chrono::time_point<std::chrono::steady_clock> current_clock =
52 std::chrono::steady_clock::now();
53 current.
user +=
static_cast<double>(
54 std::chrono::duration_cast<std::chrono::nanoseconds>(
55 current_clock - m_start)
62 #ifdef HPP_FCL_WITH_CXX11_SUPPORT
63 duration_type duration()
const {
return (m_end - m_start); }
71 #ifdef HPP_FCL_WITH_CXX11_SUPPORT
72 m_start = std::chrono::steady_clock::now();
78 if (m_is_stopped)
return;
81 #ifdef HPP_FCL_WITH_CXX11_SUPPORT
82 m_end = std::chrono::steady_clock::now();
83 m_times.user +=
static_cast<double>(
84 std::chrono::duration_cast<std::chrono::nanoseconds>(
92 #ifdef HPP_FCL_WITH_CXX11_SUPPORT
94 m_start = std::chrono::steady_clock::now();
106 #ifdef HPP_FCL_WITH_CXX11_SUPPORT
107 std::chrono::time_point<std::chrono::steady_clock> m_start, m_end;
#define HPP_FCL_DLLAPI
Definition: config.hh:88
Main namespace.
Definition: broadphase_bruteforce.h:44
double user
Definition: timings.h:19
double system
Definition: timings.h:20
CPUTimes()
Definition: timings.h:22
double wall
Definition: timings.h:18
void clear()
Definition: timings.h:24
This class mimics the way "boost/timer/timer.hpp" operates while using the modern std::chrono library...
Definition: timings.h:32
void start()
Definition: timings.h:66
CPUTimes m_times
Definition: timings.h:103
void stop()
Definition: timings.h:77
bool is_stopped() const
Definition: timings.h:100
CPUTimes elapsed() const
Definition: timings.h:46
void resume()
Definition: timings.h:91
Timer(const bool start_on_construction=true)
Default constructor for the timer.
Definition: timings.h:42
bool m_is_stopped
Definition: timings.h:104