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            https://dev.mysql.com/doc/refman/8.0/en/innodb-performance-midpoint_insertion.html
                                 Rather than using a strict LRU algorithm, InnoDB uses a technique to minimize the amount of data that is brought into the buffer pool and never accessed again. The goal is to make sure that frequently accessed (“hot”) pages remain in the buffer ...
                                            
                https://dev.mysql.com/doc/refman/8.0/en/innodb-performance-spin_lock_polling.html
                                 InnoDB mutexes and rw-locks are typically reserved for short intervals. On a multi-core system, it can be more efficient for a thread to continuously check if it can acquire a mutex or rw-lock for a period of time before it sleeps. If the mutex or ...
                                            
                https://dev.mysql.com/doc/refman/8.0/en/innodb-performance-thread_concurrency.html
                                 InnoDB uses operating system threads to process requests from user transactions. (Transactions may issue many requests to InnoDB before they commit or roll back.) On modern operating systems and servers with multi-core processors, where context ...
                                            
                https://dev.mysql.com/doc/refman/8.0/en/innodb-preload-buffer-pool.html
                                 To reduce the warmup period after restarting the server, InnoDB saves a percentage of the most recently used pages for each buffer pool at server shutdown and restores these pages at server startup. The percentage of recently used pages that is ...
                                            
                https://dev.mysql.com/doc/refman/8.0/en/innodb-tablespace-autoextend-size.html
                                 By default, when a file-per-table or general tablespace requires additional space, the tablespace is extended incrementally according to the following rules: If the tablespace is less than an extent in size, it is extended one page at a time. If ...
                                            
                https://dev.mysql.com/doc/refman/8.0/en/insert.html
                                 INSERT [LOW_PRIORITY | DELAYED | HIGH_PRIORITY] [IGNORE] [INTO] tbl_name [PARTITION (partition_name [, partition_name] ...)] [(col_name [, col_name] ...)] { {VALUES | VALUE} (value_list) [, (value_list)] ... | TABLE table_name | VALUES ...
                                            
                https://dev.mysql.com/doc/refman/8.0/en/kill.html
                                 KILL [CONNECTION | QUERY] processlist_id Each connection to mysqld runs in a separate thread. Thread processlist identifiers can be determined from the ID column of the INFORMATION_SCHEMA PROCESSLIST table, the Id column of SHOW PROCESSLIST output, ...
                                            
                https://dev.mysql.com/doc/refman/8.0/en/mathematical-functions.html
                                ABS(X) Returns the absolute value of X, or NULL if X is NULL. An implication of this is that ABS(-9223372036854775808) produces an error because the result cannot be stored in a signed BIGINT value. mysql> SELECT ABS(2); -> 2 mysql> SELECT ABS(-32); ...
                                            
                https://dev.mysql.com/doc/refman/8.0/en/memory-storage-engine.html
                                 The MEMORY storage engine (formerly known as HEAP) creates special-purpose tables with contents that are stored in memory. Because the data is vulnerable to crashes, hardware issues, or power outages, only use these tables as temporary work areas ...
                                            
                https://dev.mysql.com/doc/refman/8.0/en/multiple-key-caches.html
                                 Note As of MySQL 8.0, the compound-part structured-variable syntax discussed here for referring to multiple MyISAM key caches is deprecated. Shared access to the key cache improves performance but does not eliminate contention among sessions ...