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	--big-tables --large-page-size --storage-engine performance_schema.setup_timers (WL#10986)
		
			
				
	
	
		
			244 lines
		
	
	
	
		
			7.8 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			244 lines
		
	
	
	
		
			7.8 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
/* Copyright (c) 2008, 2023, Oracle and/or its affiliates.
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  This program is free software; you can redistribute it and/or modify
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  it under the terms of the GNU General Public License, version 2.0,
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  as published by the Free Software Foundation.
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  This program is also distributed with certain software (including
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  but not limited to OpenSSL) that is licensed under separate terms,
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  as designated in a particular file or component or in included license
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  documentation.  The authors of MySQL hereby grant you an additional
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  permission to link the program and your derivative works with the
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  separately licensed software that they have included with MySQL.
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  This program is distributed in the hope that it will be useful,
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  but WITHOUT ANY WARRANTY; without even the implied warranty of
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  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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  GNU General Public License, version 2.0, for more details.
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  You should have received a copy of the GNU General Public License
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  along with this program; if not, write to the Free Software Foundation,
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  51 Franklin Street, Fifth Floor, Boston, MA 02110-1335 USA */
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/**
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  @file storage/perfschema/table_events_waits_summary.cc
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  Table EVENTS_WAITS_SUMMARY_BY_xxx (implementation).
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*/
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#include "my_global.h"
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#include "my_thread.h"
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#include "pfs_instr_class.h"
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#include "pfs_column_types.h"
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#include "pfs_column_values.h"
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#include "table_events_waits_summary.h"
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#include "pfs_global.h"
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#include "field.h"
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THR_LOCK table_events_waits_summary_by_instance::m_table_lock;
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PFS_engine_table_share_state
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table_events_waits_summary_by_instance::m_share_state = {
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  false /* m_checked */
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};
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PFS_engine_table_share
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table_events_waits_summary_by_instance::m_share=
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{
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  { C_STRING_WITH_LEN("events_waits_summary_by_instance") },
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  &pfs_truncatable_acl,
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  table_events_waits_summary_by_instance::create,
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  NULL, /* write_row */
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  table_events_waits_summary_by_instance::delete_all_rows,
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  table_all_instr::get_row_count,
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  sizeof(pos_all_instr),
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  &m_table_lock,
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  { C_STRING_WITH_LEN("CREATE TABLE events_waits_summary_by_instance("
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                      "EVENT_NAME VARCHAR(128) not null comment 'Event name. Used together with OBJECT_INSTANCE_BEGIN for grouping events.',"
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                      "OBJECT_INSTANCE_BEGIN BIGINT unsigned not null comment 'If an instrument creates multiple instances, each instance has a unique OBJECT_INSTANCE_BEGIN value to allow for grouping by instance.',"
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                      "COUNT_STAR BIGINT unsigned not null comment 'Number of summarized events',"
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                      "SUM_TIMER_WAIT BIGINT unsigned not null comment 'Total wait time of the summarized events that are timed.',"
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                      "MIN_TIMER_WAIT BIGINT unsigned not null comment 'Minimum wait time of the summarized events that are timed.',"
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                      "AVG_TIMER_WAIT BIGINT unsigned not null comment 'Average wait time of the summarized events that are timed.',"
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                      "MAX_TIMER_WAIT BIGINT unsigned not null comment 'Maximum wait time of the summarized events that are timed.')") },
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  false, /* m_perpetual */
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  false, /* m_optional */
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  &m_share_state
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};
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PFS_engine_table* table_events_waits_summary_by_instance::create(void)
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{
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  return new table_events_waits_summary_by_instance();
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}
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int table_events_waits_summary_by_instance::delete_all_rows(void)
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{
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  reset_events_waits_by_instance();
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  return 0;
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}
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table_events_waits_summary_by_instance
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::table_events_waits_summary_by_instance()
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  : table_all_instr(&m_share), m_row_exists(false)
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{
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  m_normalizer = time_normalizer::get_wait();
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}
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void table_events_waits_summary_by_instance
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::make_instr_row(PFS_instr *pfs, PFS_instr_class *klass,
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                 const void *object_instance_begin,
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                 PFS_single_stat *pfs_stat)
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{
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  pfs_optimistic_state lock;
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  m_row_exists= false;
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  /*
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    Protect this reader against a mutex/rwlock/cond destroy,
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    file delete, table drop.
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  */
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  pfs->m_lock.begin_optimistic_lock(&lock);
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  m_row.m_name= klass->m_name;
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  m_row.m_name_length= klass->m_name_length;
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  m_row.m_object_instance_addr= (intptr) object_instance_begin;
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  m_row.m_stat.set(m_normalizer, pfs_stat);
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  if (pfs->m_lock.end_optimistic_lock(&lock))
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    m_row_exists= true;
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}
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/**
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  Build a row, for mutex statistics in a thread.
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  @param pfs              the mutex this cursor is reading
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*/
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void table_events_waits_summary_by_instance::make_mutex_row(PFS_mutex *pfs)
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{
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  PFS_mutex_class *safe_class;
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  safe_class= sanitize_mutex_class(pfs->m_class);
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  if (unlikely(safe_class == NULL))
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    return;
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  make_instr_row(pfs, safe_class, pfs->m_identity, &pfs->m_mutex_stat.m_wait_stat);
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}
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/**
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  Build a row, for rwlock statistics in a thread.
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  @param pfs              the rwlock this cursor is reading
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*/
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void table_events_waits_summary_by_instance::make_rwlock_row(PFS_rwlock *pfs)
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{
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  PFS_rwlock_class *safe_class;
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  safe_class= sanitize_rwlock_class(pfs->m_class);
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  if (unlikely(safe_class == NULL))
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    return;
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  make_instr_row(pfs, safe_class, pfs->m_identity, &pfs->m_rwlock_stat.m_wait_stat);
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}
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/**
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  Build a row, for condition statistics in a thread.
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  @param pfs              the condition this cursor is reading
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*/
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void table_events_waits_summary_by_instance::make_cond_row(PFS_cond *pfs)
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{
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  PFS_cond_class *safe_class;
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  safe_class= sanitize_cond_class(pfs->m_class);
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  if (unlikely(safe_class == NULL))
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    return;
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  make_instr_row(pfs, safe_class, pfs->m_identity, &pfs->m_cond_stat.m_wait_stat);
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}
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/**
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  Build a row, for file statistics in a thread.
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  @param pfs              the file this cursor is reading
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*/
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void table_events_waits_summary_by_instance::make_file_row(PFS_file *pfs)
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{
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  PFS_file_class *safe_class;
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  safe_class= sanitize_file_class(pfs->m_class);
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  if (unlikely(safe_class == NULL))
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    return;
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  PFS_single_stat sum;
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  pfs->m_file_stat.m_io_stat.sum_waits(& sum);
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  /*
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    Files don't have a in memory structure associated to it,
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    so we use the address of the PFS_file buffer as object_instance_begin
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  */
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  make_instr_row(pfs, safe_class, pfs, & sum);
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}
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/**
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  Build a row, for socket statistics in a thread.
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  @param pfs              the socket this cursor is reading
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*/
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void table_events_waits_summary_by_instance::make_socket_row(PFS_socket *pfs)
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{
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  PFS_socket_class *safe_class;
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  safe_class= sanitize_socket_class(pfs->m_class);
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  if (unlikely(safe_class == NULL))
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    return;
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  /*
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     Consolidate wait times and byte counts for individual operations. This is
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     done by the consumer in order to reduce overhead on the socket instrument.
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  */
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  PFS_byte_stat pfs_stat;
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  pfs->m_socket_stat.m_io_stat.sum(&pfs_stat);
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  /*
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    Sockets don't have an associated in-memory structure, so use the address of
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    the PFS_socket buffer as object_instance_begin.
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  */
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  make_instr_row(pfs, safe_class, pfs, &pfs_stat);
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}
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int table_events_waits_summary_by_instance
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::read_row_values(TABLE *table, unsigned char *, Field **fields,
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                  bool read_all)
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{
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  Field *f;
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  if (unlikely(! m_row_exists))
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    return HA_ERR_RECORD_DELETED;
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  /* Set the null bits */
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  assert(table->s->null_bytes == 0);
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  for (; (f= *fields) ; fields++)
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  {
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    if (read_all || bitmap_is_set(table->read_set, f->field_index))
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    {
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      switch(f->field_index)
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      {
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      case 0: /* NAME */
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        set_field_varchar_utf8(f, m_row.m_name, m_row.m_name_length);
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        break;
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      case 1: /* OBJECT_INSTANCE */
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        set_field_ulonglong(f, m_row.m_object_instance_addr);
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        break;
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      case 2: /* COUNT */
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        set_field_ulonglong(f, m_row.m_stat.m_count);
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        break;
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      case 3: /* SUM */
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        set_field_ulonglong(f, m_row.m_stat.m_sum);
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        break;
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      case 4: /* MIN */
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        set_field_ulonglong(f, m_row.m_stat.m_min);
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        break;
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      case 5: /* AVG */
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        set_field_ulonglong(f, m_row.m_stat.m_avg);
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        break;
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      case 6: /* MAX */
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        set_field_ulonglong(f, m_row.m_stat.m_max);
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        break;
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      default:
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        assert(false);
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      }
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    }
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  }
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  return 0;
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}
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