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	Partial commit of the greater MDEV-34348 scope. MDEV-34348: MariaDB is violating clang-16 -Wcast-function-type-strict Change the type of my_hash_get_key to: 1) Return const 2) Change the context parameter to be const void* Also fix casting in hash adjacent areas. Reviewed By: ============ Marko Mäkelä <marko.makela@mariadb.com>
		
			
				
	
	
		
			339 lines
		
	
	
	
		
			7.7 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			339 lines
		
	
	
	
		
			7.7 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
/* Copyright (c) 2010, 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
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  Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1335  USA */
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/**
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  @file storage/perfschema/pfs_user.cc
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  Performance schema user (implementation).
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*/
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#include "my_global.h"
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#include "my_sys.h"
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#include "pfs.h"
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#include "pfs_stat.h"
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#include "pfs_instr.h"
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#include "pfs_setup_actor.h"
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#include "pfs_user.h"
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#include "pfs_global.h"
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#include "pfs_instr_class.h"
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#include "pfs_buffer_container.h"
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/**
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  @addtogroup Performance_schema_buffers
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  @{
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*/
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LF_HASH user_hash;
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static bool user_hash_inited= false;
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/**
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  Initialize the user buffers.
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  @param param                        sizing parameters
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  @return 0 on success
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*/
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int init_user(const PFS_global_param *param)
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{
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  if (global_user_container.init(param->m_user_sizing))
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    return 1;
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  return 0;
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}
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/** Cleanup all the user buffers. */
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void cleanup_user(void)
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{
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  global_user_container.cleanup();
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}
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C_MODE_START
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static const uchar *user_hash_get_key(const void *entry, size_t *length,
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                                      my_bool)
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{
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  const PFS_user * const *typed_entry;
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  const PFS_user *user;
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  const void *result;
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  typed_entry= static_cast<const PFS_user* const *> (entry);
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  assert(typed_entry != NULL);
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  user= *typed_entry;
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  assert(user != NULL);
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  *length= user->m_key.m_key_length;
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  result= user->m_key.m_hash_key;
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  return reinterpret_cast<const uchar *>(result);
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}
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C_MODE_END
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/**
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  Initialize the user hash.
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  @return 0 on success
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*/
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int init_user_hash(const PFS_global_param *param)
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{
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  if ((! user_hash_inited) && (param->m_user_sizing != 0))
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  {
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    lf_hash_init(&user_hash, sizeof(PFS_user*), LF_HASH_UNIQUE,
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                 0, 0, user_hash_get_key, &my_charset_bin);
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    user_hash_inited= true;
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  }
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  return 0;
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}
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/** Cleanup the user hash. */
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void cleanup_user_hash(void)
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{
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  if (user_hash_inited)
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  {
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    lf_hash_destroy(&user_hash);
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    user_hash_inited= false;
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  }
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}
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static LF_PINS* get_user_hash_pins(PFS_thread *thread)
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{
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  if (unlikely(thread->m_user_hash_pins == NULL))
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  {
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    if (! user_hash_inited)
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      return NULL;
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    thread->m_user_hash_pins= lf_hash_get_pins(&user_hash);
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  }
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  return thread->m_user_hash_pins;
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}
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static void set_user_key(PFS_user_key *key,
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                         const char *user, uint user_length)
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{
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  assert(user_length <= USERNAME_LENGTH);
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  char *ptr= &key->m_hash_key[0];
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  if (user_length > 0)
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  {
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    memcpy(ptr, user, user_length);
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    ptr+= user_length;
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  }
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  ptr[0]= 0;
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  ptr++;
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  key->m_key_length= (uint)(ptr - &key->m_hash_key[0]);
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}
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PFS_user *
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find_or_create_user(PFS_thread *thread,
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                    const char *username, uint username_length)
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{
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  LF_PINS *pins= get_user_hash_pins(thread);
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  if (unlikely(pins == NULL))
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  {
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    global_user_container.m_lost++;
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    return NULL;
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  }
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  PFS_user_key key;
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  set_user_key(&key, username, username_length);
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  PFS_user **entry;
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  PFS_user *pfs;
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  uint retry_count= 0;
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  const uint retry_max= 3;
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  pfs_dirty_state dirty_state;
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search:
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  entry= reinterpret_cast<PFS_user**>
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    (lf_hash_search(&user_hash, pins,
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                    key.m_hash_key, key.m_key_length));
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  if (entry && (entry != MY_ERRPTR))
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  {
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    pfs= *entry;
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    pfs->inc_refcount();
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    lf_hash_search_unpin(pins);
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    return pfs;
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  }
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  lf_hash_search_unpin(pins);
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  pfs= global_user_container.allocate(& dirty_state);
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  if (pfs != NULL)
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  {
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    pfs->m_key= key;
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    if (username_length > 0)
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      pfs->m_username= &pfs->m_key.m_hash_key[0];
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    else
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      pfs->m_username= NULL;
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    pfs->m_username_length= username_length;
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    pfs->init_refcount();
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    pfs->reset_stats();
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    pfs->m_disconnected_count= 0;
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    int res;
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    pfs->m_lock.dirty_to_allocated(& dirty_state);
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    res= lf_hash_insert(&user_hash, pins, &pfs);
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    if (likely(res == 0))
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    {
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      return pfs;
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    }
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    global_user_container.deallocate(pfs);
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    if (res > 0)
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    {
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      if (++retry_count > retry_max)
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      {
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        global_user_container.m_lost++;
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        return NULL;
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      }
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      goto search;
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    }
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    global_user_container.m_lost++;
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    return NULL;
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  }
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  return NULL;
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}
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void PFS_user::aggregate(bool alive)
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{
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  aggregate_waits();
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  aggregate_stages();
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  aggregate_statements();
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  aggregate_transactions();
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  aggregate_memory(alive);
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  aggregate_status();
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  aggregate_stats();
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}
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void PFS_user::aggregate_waits()
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{
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  /* No parent to aggregate to, clean the stats */
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  reset_waits_stats();
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}
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void PFS_user::aggregate_stages()
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{
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  /* No parent to aggregate to, clean the stats */
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  reset_stages_stats();
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}
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void PFS_user::aggregate_statements()
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{
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  /* No parent to aggregate to, clean the stats */
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  reset_statements_stats();
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}
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void PFS_user::aggregate_transactions()
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{
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  /* No parent to aggregate to, clean the stats */
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  reset_transactions_stats();
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}
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void PFS_user::aggregate_memory(bool alive)
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{
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  /* No parent to aggregate to, clean the stats */
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  rebase_memory_stats();
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}
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void PFS_user::aggregate_status()
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{
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  /* No parent to aggregate to, clean the stats */
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  reset_status_stats();
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}
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void PFS_user::aggregate_stats()
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{
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  /* No parent to aggregate to, clean the stats */
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  m_disconnected_count= 0;
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}
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void PFS_user::release()
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{
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  dec_refcount();
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}
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void PFS_user::carry_memory_stat_delta(PFS_memory_stat_delta *delta, uint index)
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{
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  PFS_memory_stat *event_name_array;
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  PFS_memory_stat *stat;
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  PFS_memory_stat_delta delta_buffer;
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  event_name_array= write_instr_class_memory_stats();
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  stat= & event_name_array[index];
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  (void) stat->apply_delta(delta, &delta_buffer);
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}
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PFS_user *sanitize_user(PFS_user *unsafe)
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{
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  return global_user_container.sanitize(unsafe);
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}
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void purge_user(PFS_thread *thread, PFS_user *user)
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{
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  LF_PINS *pins= get_user_hash_pins(thread);
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  if (unlikely(pins == NULL))
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    return;
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  PFS_user **entry;
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  entry= reinterpret_cast<PFS_user**>
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    (lf_hash_search(&user_hash, pins,
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                    user->m_key.m_hash_key, user->m_key.m_key_length));
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  if (entry && (entry != MY_ERRPTR))
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  {
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    assert(*entry == user);
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    if (user->get_refcount() == 0)
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    {
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      lf_hash_delete(&user_hash, pins,
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                     user->m_key.m_hash_key, user->m_key.m_key_length);
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      user->aggregate(false);
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      global_user_container.deallocate(user);
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    }
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  }
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  lf_hash_search_unpin(pins);
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}
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class Proc_purge_user
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  : public PFS_buffer_processor<PFS_user>
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{
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public:
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  Proc_purge_user(PFS_thread *thread)
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    : m_thread(thread)
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  {}
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  void operator()(PFS_user *pfs) override
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  {
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    pfs->aggregate(true);
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    if (pfs->get_refcount() == 0)
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      purge_user(m_thread, pfs);
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  }
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private:
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  PFS_thread *m_thread;
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};
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/** Purge non connected users, reset stats of connected users. */
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void purge_all_user(void)
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{
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  PFS_thread *thread= PFS_thread::get_current_thread();
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  if (unlikely(thread == NULL))
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    return;
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  Proc_purge_user proc(thread);
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  global_user_container.apply(proc);
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}
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/** @} */
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