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I noticed that my database server supports the Memory database engine. I want to make a database I have already made running InnoDB run completely in memory for performance.

How do I do that? I explored PHPMyAdmin, and I can't find a "change engine" functionality.

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You should understand first what you are doing there. Using the memory engine has certain implications. –  usr May 21 '12 at 20:51
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running in memory means that the data is wiped as soon as you restart the MySQL daemon (or it crashes), you'd be better off playing with query_cache for MySQL or memcached for caching results –  Mikey May 21 '12 at 20:54
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I'm not sure that this is what you want. What is your performance problem exactly? –  Mario May 21 '12 at 21:01
    
My database is really slow right now. My queries have a lot of JOIN statements, and some of the queried data sets are huge. I figured that putting all this data in RAM would speed things up, right? –  John Hoffman May 21 '12 at 21:08
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Very unlikely. Add/adjust your indexes. Consolidate your queries for efficiency. Stuff like that is generally more effective and should be your initial approach. –  PinnyM May 21 '12 at 21:10

6 Answers 6

up vote 7 down vote accepted

Assuming you understand the consequences of using the MEMORY engine as mentioned in comments, and here, as well as some others you'll find by searching about (no transaction safety, locking issues, etc) - you can proceed as follows:

MEMORY tables are stored differently than InnoDB, so you'll need to use an export/import strategy. First dump each table separately to a file using SELECT * FROM tablename INTO OUTFILE 'table_filename'. Create the MEMORY database and recreate the tables you'll be using. You can then import your data using LOAD DATA INFILE 'table_filename' INTO TABLE tablename for each table.

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Would the downvoter care to comment? –  PinnyM May 12 '14 at 15:23
    
Nowhere does this actually say how to create an in memory database or table. –  still_dreaming_1 Nov 22 '14 at 0:36
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To the point made by @INTPnerd, when recreating the tables, use the syntax: CREATE TABLE someTable (...) ENGINE = MEMORY; –  PinnyM Nov 27 '14 at 3:23
    
Is there a reason you don't suggest mysqldump? I just tried it and didn't see any issues (just a very quick test though). –  Bet Lamed Mar 23 at 8:51

Memory Engine is not the solution you're looking for. You lose everything that you went to a database for in the first place (i.e. ACID).

Here are some better alternatives:

  1. Don't use joins - very few large apps do this (i.e Google, Flickr, NetFlix), because it sucks for large sets of joins.
  2. Make sure the columns you're querying against have indexes. Use EXPLAIN to confirm they are being used.
  3. Use and increase your Query_Cache and memory space for your indexes to get them in memory and store frequent lookups.
  4. Denormalize your schema, especially for simple joins (i.e. get fooId from barMap).

The last point is key. I used to love joins, but then had to run joins on a few tables with 100M+ rows. No good. Better off insert the data you're joining against into that target table (if it's not too much) and query against indexed columns and you'll get your query in a few ms.

I hope those help.

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That last point may be great for performance, but it can be a killer for data consistency and maintenance if not used properly. Trigger updates or similar cache replication strategies can help there, but the manner of caching the denormalized data shouldn't be taken for granted... –  PinnyM May 21 '12 at 21:19
    
@PinnyM good point. This is where one must decide what is most important. RDBMS are great for atomicity and consistency, but not for scaling and performance, esp on joins. 6NF (Star Schema) is very normal, but join happy. You can still keep the data in some tables in a normalized manner and use triggers and scheduled tasks to update the denormalized (read only) tables from the normalized tables (read/write). –  Joseph Lust May 21 '12 at 21:42

If your database is small enough (or if you add enough memory) your database will effectively run in memory since it your data will be cached after the first request.

Changing the database table definitions to use the memory engine is probably more complicated than you need.

If you have enough memory to load the tables into memory with the MEMORY engine, you have enough to tune the innodb settings to cache everything anyway.

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It is also possible to place the MySQL data directory in a tmpfs in thus speeding up the database write and read calls. It might not be the most efficient way to do this but sometimes you can't just change the storage engine.

Here is my fstab entry for my MySQL data directory

none            /opt/mysql/server-5.6/data  tmpfs   defaults,size=1000M,uid=999,gid=1000,mode=0700          0       0

I also wrote a post that explains the setup in more detail. I use this setup for database tests.

http://jotschi.de/2014/02/03/high-performance-mysql-testdatabase.html

You may also want to take a look at the innodb_flush_log_at_trx_commit=2 setting. Maybe this will speedup your MySQL sufficently.

innodb_flush_log_at_trx_commit changes the mysql disk flush behaviour. When set to 2 it will only flush the buffer every second. By default each insert will cause a flush and thus cause more IO load.

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You may also want to take a look at libeatmydata. It prevents fsync and older sync calls and thus speedup the application. flamingspork.com/projects/libeatmydata (apt-get install eatmydata ; eatmydata /etc/init.d/mysql restart) –  Jotschi Oct 28 '14 at 19:46

In place of the Memory storage engine, one can consider MySQL Cluster. It is said to give similar performance but to support disk-backed operation for durability. I've not tried it, but it looks promising (and been in development for a number of years).

You can find the official MySQL Cluster documentation here.

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"How do I do that? I explored PHPMyAdmin, and I can't find a "change engine" functionality."

In direct response to this part of your question, you can issue an ALTER TABLE tbl engine=InnoDB; and it'll recreate the table in the proper engine.

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