/* Copyright (c) 2008, 2023, Oracle and/or its affiliates.
This program is free software ; you can redistribute it and / or modify
it under the terms of the GNU General Public License , version 2 . 0 ,
as published by the Free Software Foundation .
This program is also distributed with certain software ( including
but not limited to OpenSSL ) that is licensed under separate terms ,
as designated in a particular file or component or in included license
documentation . The authors of MySQL hereby grant you an additional
permission to link the program and your derivative works with the
separately licensed software that they have included with MySQL .
This program is distributed in the hope that it will be useful ,
but WITHOUT ANY WARRANTY ; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE . See the
GNU General Public License , version 2 . 0 , for more details .
You should have received a copy of the GNU General Public License
along with this program ; if not , write to the Free Software Foundation ,
51 Franklin Street, Fifth Floor, Boston, MA 02110-1335 USA */
/**
@ file storage / perfschema / pfs_timer . cc
Performance schema timers ( implementation ) .
*/
#include "my_global.h"
#include "pfs_timer.h"
#include "my_rdtsc.h"
#include "log.h" /* sql_print_warning */
static ulonglong cycle_v0;
static ulonglong nanosec_v0;
static ulonglong microsec_v0;
static ulonglong millisec_v0;
static ulong cycle_to_pico; /* 1000 at 1 GHz, 333 at 3GHz, 250 at 4GHz */
static ulong nanosec_to_pico; /* In theory, 1 000 */
static ulong microsec_to_pico; /* In theory, 1 000 000 */
static ulong millisec_to_pico; /* In theory, 1 000 000 000, fits in uint32 */
/* Indexed by enum enum_timer_name */
static struct time_normalizer to_pico_data[FIRST_TIMER_NAME + COUNT_TIMER_NAME]=
{
{ 0 , 0 }, /* unused */
{ 0 , 0 }, /* cycle */
{ 0 , 0 }, /* nanosec */
{ 0 , 0 }, /* microsec */
{ 0 , 0 }, /* millisec */
};
static inline ulong round_to_ulong(double value)
{
return (ulong) (value + 0 .5 );
}
void init_timers(void )
{
double pico_frequency= 1 .0 e12;
cycle_v0= my_timer_cycles();
nanosec_v0= my_timer_nanoseconds();
microsec_v0= my_timer_microseconds();
millisec_v0= my_timer_milliseconds();
if (sys_timer_info.cycles.frequency > 0 )
cycle_to_pico= round_to_ulong(pico_frequency/
(double )sys_timer_info.cycles.frequency);
else
cycle_to_pico= 0 ;
if (sys_timer_info.nanoseconds.frequency > 0 )
nanosec_to_pico= round_to_ulong(pico_frequency/
(double )sys_timer_info.nanoseconds.frequency);
else
nanosec_to_pico= 0 ;
if (sys_timer_info.microseconds.frequency > 0 )
microsec_to_pico= round_to_ulong(pico_frequency/
(double )sys_timer_info.microseconds.frequency);
else
microsec_to_pico= 0 ;
if (sys_timer_info.milliseconds.frequency > 0 )
millisec_to_pico= round_to_ulong(pico_frequency/
(double )sys_timer_info.milliseconds.frequency);
else
millisec_to_pico= 0 ;
to_pico_data[TIMER_NAME_CYCLE].m_v0= cycle_v0;
to_pico_data[TIMER_NAME_CYCLE].m_factor= cycle_to_pico;
to_pico_data[TIMER_NAME_NANOSEC].m_v0= nanosec_v0;
to_pico_data[TIMER_NAME_NANOSEC].m_factor= nanosec_to_pico;
to_pico_data[TIMER_NAME_MICROSEC].m_v0= microsec_v0;
to_pico_data[TIMER_NAME_MICROSEC].m_factor= microsec_to_pico;
to_pico_data[TIMER_NAME_MILLISEC].m_v0= millisec_v0;
to_pico_data[TIMER_NAME_MILLISEC].m_factor= millisec_to_pico;
if (cycle_to_pico == 0 )
sql_print_warning("The CYCLE timer is not available. "
"WAIT events in the performance_schema will not be timed." );
#ifdef HAVE_NANOSEC_TIMER
if (nanosec_to_pico == 0 )
sql_print_warning("The NANOSECOND timer is not available. "
"IDLE/STAGE/STATEMENT/TRANSACTION events in the performance_schema will not be timed." );
#else
if (microsec_to_pico == 0 )
sql_print_warning("The MICROSECOND timer is not available. "
"IDLE/STAGE/STATEMENT/TRANSACTION events in the performance_schema will not be timed." );
#endif
}
time_normalizer *time_normalizer::get_idle()
{
return &to_pico_data[USED_TIMER_NAME];
}
time_normalizer *time_normalizer::get_wait()
{
return &to_pico_data[TIMER_NAME_CYCLE];
}
time_normalizer *time_normalizer::get_stage()
{
return &to_pico_data[USED_TIMER_NAME];
}
time_normalizer *time_normalizer::get_statement()
{
return &to_pico_data[USED_TIMER_NAME];
}
time_normalizer *time_normalizer::get_transaction()
{
return &to_pico_data[USED_TIMER_NAME];
}
void time_normalizer::to_pico(ulonglong start, ulonglong end,
ulonglong *pico_start, ulonglong *pico_end, ulonglong *pico_wait)
{
if (start == 0 )
{
*pico_start= 0 ;
*pico_end= 0 ;
*pico_wait= 0 ;
}
else
{
*pico_start= (start - m_v0) * m_factor;
if (end == 0 )
{
*pico_end= 0 ;
*pico_wait= 0 ;
}
else
{
*pico_end= (end - m_v0) * m_factor;
*pico_wait= (end - start) * m_factor;
}
}
}
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