mirror of
https://github.com/MariaDB/server.git
synced 2025-01-31 11:01:52 +01:00
6b91792a08
This is a backport of commit8b6a308e46
from MariaDB Server 10.6.11. No attempt to reproduce the hang in earlier an earlier version of MariaDB Server than 10.6 was made. In each caller of fseg_n_reserved_pages() except ibuf_init_at_db_start() which is a special case for ibuf.index at database startup, we must hold an index latch that prevents concurrent allocation or freeing of index pages. Any operation that allocates or free pages that belong to an index tree must first acquire an index latch in non-shared mode, and while holding that, acquire an index root page latch in non-shared mode. btr_get_size(), btr_get_size_and_reserved(): Assert that a strong enough index latch is being held. dict_stats_update_transient_for_index(), dict_stats_analyze_index(): Acquire a strong enough index latch. These operations had followed the same order of acquiring latches in every InnoDB version since the very beginning (commitc533308a15
). The hang was introduced in commit2e814d4702
which imported mysql/mysql-server@ac74632293 which failed to strengthen the locking requirements of the function btr_get_size().
333 lines
8.8 KiB
C++
333 lines
8.8 KiB
C++
/*****************************************************************************
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Copyright (c) 2016, 2022, MariaDB Corporation.
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This program is free software; you can redistribute it and/or modify it under
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the terms of the GNU General Public License as published by the Free Software
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Foundation; version 2 of the License.
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This program is distributed in the hope that it will be useful, but WITHOUT
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ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS
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FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details.
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You should have received a copy of the GNU General Public License along with
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this program; if not, write to the Free Software Foundation, Inc.,
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51 Franklin Street, Fifth Floor, Boston, MA 02110-1335 USA
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*****************************************************************************/
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/**************************************************//**
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@file dict/dict0defrag_bg.cc
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Defragmentation routines.
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Created 25/08/2016 Jan Lindström
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*******************************************************/
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#include "dict0dict.h"
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#include "dict0stats.h"
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#include "dict0stats_bg.h"
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#include "dict0defrag_bg.h"
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#include "btr0btr.h"
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#include "srv0start.h"
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static ib_mutex_t defrag_pool_mutex;
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#ifdef MYSQL_PFS
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static mysql_pfs_key_t defrag_pool_mutex_key;
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#endif
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/** Iterator type for iterating over the elements of objects of type
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defrag_pool_t. */
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typedef defrag_pool_t::iterator defrag_pool_iterator_t;
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/** Pool where we store information on which tables are to be processed
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by background defragmentation. */
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defrag_pool_t defrag_pool;
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extern bool dict_stats_start_shutdown;
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/*****************************************************************//**
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Initialize the defrag pool, called once during thread initialization. */
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void
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dict_defrag_pool_init(void)
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/*=======================*/
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{
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ut_ad(!srv_read_only_mode);
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/* We choose SYNC_STATS_DEFRAG to be below SYNC_FSP_PAGE. */
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mutex_create(LATCH_ID_DEFRAGMENT_MUTEX, &defrag_pool_mutex);
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}
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/*****************************************************************//**
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Free the resources occupied by the defrag pool, called once during
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thread de-initialization. */
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void
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dict_defrag_pool_deinit(void)
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/*=========================*/
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{
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ut_ad(!srv_read_only_mode);
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mutex_free(&defrag_pool_mutex);
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}
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/*****************************************************************//**
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Get an index from the auto defrag pool. The returned index id is removed
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from the pool.
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@return true if the pool was non-empty and "id" was set, false otherwise */
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static
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bool
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dict_stats_defrag_pool_get(
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/*=======================*/
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table_id_t* table_id, /*!< out: table id, or unmodified if
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list is empty */
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index_id_t* index_id) /*!< out: index id, or unmodified if
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list is empty */
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{
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ut_ad(!srv_read_only_mode);
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mutex_enter(&defrag_pool_mutex);
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if (defrag_pool.empty()) {
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mutex_exit(&defrag_pool_mutex);
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return(false);
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}
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defrag_pool_item_t& item = defrag_pool.back();
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*table_id = item.table_id;
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*index_id = item.index_id;
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defrag_pool.pop_back();
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mutex_exit(&defrag_pool_mutex);
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return(true);
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}
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/*****************************************************************//**
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Add an index in a table to the defrag pool, which is processed by the
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background stats gathering thread. Only the table id and index id are
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added to the list, so the table can be closed after being enqueued and
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it will be opened when needed. If the table or index does not exist later
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(has been DROPped), then it will be removed from the pool and skipped. */
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void
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dict_stats_defrag_pool_add(
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/*=======================*/
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const dict_index_t* index) /*!< in: table to add */
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{
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defrag_pool_item_t item;
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ut_ad(!srv_read_only_mode);
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mutex_enter(&defrag_pool_mutex);
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/* quit if already in the list */
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for (defrag_pool_iterator_t iter = defrag_pool.begin();
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iter != defrag_pool.end();
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++iter) {
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if ((*iter).table_id == index->table->id
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&& (*iter).index_id == index->id) {
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mutex_exit(&defrag_pool_mutex);
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return;
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}
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}
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item.table_id = index->table->id;
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item.index_id = index->id;
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defrag_pool.push_back(item);
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mutex_exit(&defrag_pool_mutex);
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os_event_set(dict_stats_event);
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}
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/*****************************************************************//**
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Delete a given index from the auto defrag pool. */
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void
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dict_stats_defrag_pool_del(
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/*=======================*/
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const dict_table_t* table, /*!<in: if given, remove
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all entries for the table */
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const dict_index_t* index) /*!< in: if given, remove this index */
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{
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ut_a((table && !index) || (!table && index));
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ut_ad(!srv_read_only_mode);
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ut_ad(mutex_own(&dict_sys->mutex));
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mutex_enter(&defrag_pool_mutex);
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defrag_pool_iterator_t iter = defrag_pool.begin();
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while (iter != defrag_pool.end()) {
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if ((table && (*iter).table_id == table->id)
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|| (index
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&& (*iter).table_id == index->table->id
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&& (*iter).index_id == index->id)) {
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/* erase() invalidates the iterator */
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iter = defrag_pool.erase(iter);
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if (index)
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break;
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} else {
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iter++;
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}
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}
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mutex_exit(&defrag_pool_mutex);
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}
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/*****************************************************************//**
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Get the first index that has been added for updating persistent defrag
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stats and eventually save its stats. */
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static
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void
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dict_stats_process_entry_from_defrag_pool()
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{
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table_id_t table_id;
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index_id_t index_id;
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ut_ad(!srv_read_only_mode);
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/* pop the first index from the auto defrag pool */
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if (!dict_stats_defrag_pool_get(&table_id, &index_id)) {
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/* no index in defrag pool */
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return;
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}
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dict_table_t* table;
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mutex_enter(&dict_sys->mutex);
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/* If the table is no longer cached, we've already lost the in
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memory stats so there's nothing really to write to disk. */
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table = dict_table_open_on_id(table_id, TRUE,
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DICT_TABLE_OP_OPEN_ONLY_IF_CACHED);
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dict_index_t* index = table && !table->corrupted
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? dict_table_find_index_on_id(table, index_id)
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: NULL;
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if (!index || index->is_corrupted()) {
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if (table) {
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dict_table_close(table, TRUE, FALSE);
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}
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mutex_exit(&dict_sys->mutex);
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return;
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}
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mutex_exit(&dict_sys->mutex);
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dict_stats_save_defrag_stats(index);
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dict_table_close(table, FALSE, FALSE);
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}
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/*****************************************************************//**
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Get the first index that has been added for updating persistent defrag
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stats and eventually save its stats. */
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void
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dict_defrag_process_entries_from_defrag_pool()
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/*==========================================*/
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{
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while (defrag_pool.size() && !dict_stats_start_shutdown) {
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dict_stats_process_entry_from_defrag_pool();
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}
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}
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/*********************************************************************//**
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Save defragmentation result.
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@return DB_SUCCESS or error code */
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dberr_t
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dict_stats_save_defrag_summary(
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/*============================*/
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dict_index_t* index) /*!< in: index */
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{
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dberr_t ret=DB_SUCCESS;
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if (dict_index_is_ibuf(index)) {
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return DB_SUCCESS;
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}
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rw_lock_x_lock(&dict_operation_lock);
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mutex_enter(&dict_sys->mutex);
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ret = dict_stats_save_index_stat(index, time(NULL), "n_pages_freed",
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index->stat_defrag_n_pages_freed,
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NULL,
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"Number of pages freed during"
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" last defragmentation run.",
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NULL);
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mutex_exit(&dict_sys->mutex);
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rw_lock_x_unlock(&dict_operation_lock);
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return (ret);
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}
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/*********************************************************************//**
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Save defragmentation stats for a given index.
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@return DB_SUCCESS or error code */
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dberr_t
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dict_stats_save_defrag_stats(
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/*============================*/
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dict_index_t* index) /*!< in: index */
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{
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dberr_t ret;
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if (dict_index_is_ibuf(index)) {
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return DB_SUCCESS;
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}
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if (!index->is_readable()) {
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return dict_stats_report_error(index->table, true);
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}
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const time_t now = time(NULL);
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mtr_t mtr;
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ulint n_leaf_pages;
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ulint n_leaf_reserved;
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mtr.start();
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mtr_sx_lock_index(index, &mtr);
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n_leaf_reserved = btr_get_size_and_reserved(index, BTR_N_LEAF_PAGES,
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&n_leaf_pages, &mtr);
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mtr.commit();
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if (n_leaf_reserved == ULINT_UNDEFINED) {
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// The index name is different during fast index creation,
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// so the stats won't be associated with the right index
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// for later use. We just return without saving.
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return DB_SUCCESS;
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}
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rw_lock_x_lock(&dict_operation_lock);
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mutex_enter(&dict_sys->mutex);
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ret = dict_stats_save_index_stat(index, now, "n_page_split",
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index->stat_defrag_n_page_split,
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NULL,
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"Number of new page splits on leaves"
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" since last defragmentation.",
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NULL);
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if (ret != DB_SUCCESS) {
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goto end;
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}
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ret = dict_stats_save_index_stat(
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index, now, "n_leaf_pages_defrag",
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n_leaf_pages,
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NULL,
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"Number of leaf pages when this stat is saved to disk",
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NULL);
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if (ret != DB_SUCCESS) {
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goto end;
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}
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ret = dict_stats_save_index_stat(
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index, now, "n_leaf_pages_reserved",
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n_leaf_reserved,
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NULL,
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"Number of pages reserved for this index leaves when this stat "
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"is saved to disk",
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NULL);
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end:
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mutex_exit(&dict_sys->mutex);
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rw_lock_x_unlock(&dict_operation_lock);
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return (ret);
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}
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