MySQL 服务器性能调优 Making sure your MySQL server flies
HOW MYSQL USES MEMORY MySQL uses memory for a variety of internal buffers and caches that influence how often it must access files that reside on disk. The more often it has to wait for a disk to respond, the slower it will be. As fast as
HOW MYSQL USES MEMORY
MySQL uses memory for a variety of internal buffers and caches that influence how often it must access files that reside on disk. The more often it has to wait for a disk to respond, the slower it will be. As fast as modern disk drives are, they're still an order of magnitude (or more) slower than RAM. And given the recent drops in memory prices, odds are pretty good that you can easily afford to add memory to a server if it will speed things up. Upgrading to faster disks should be a last resort.
MySQL's buffers and caches come in two flavors, global and per-thread:
GLOBAL: As its name suggests, these memory areas are allocated once and are shared among all of MySQL's threads. Two of the ones we'll look at are the key buffer and the table cache. Because these are shared buffers, the goal is to make them as large as possible (without unnecessarily taxing our resources).
PER-THREAD: These buffers allocate memory individually to queries as they need to perform particular operations, such as sorting or grouping. Incidentally, most of MySQL's buffers are allocated on this per-thread basis. The per-thread buffers we'll be looking at are the record buffer and the sort buffer.
Let's first examine what function each of the buffers serves and how to set and inspect their values. Then we'll look at how to examine MySQL's performance counters and judge whether or not changes you make are having any significant impact.
KEY BUFFER
The key buffer is where MySQL caches index blocks for MyISAM tables. Anytime a query uses an index, MySQL will first check to see if the relevant index is in memory or not. The key_buffer parameter in your my.cnf file controls how large the buffer is allowed to get. Once the buffer is full, MySQL will make room for new data by replacing older data that hasn't been used recently. (See the Using a my.cnf File sidebar if you're not familiar with MySQL's configuration file.)
The size of the key buffer appears as key_buffer_ size in the output of SHOW VARIABLES. With a 384 MB key buffer, you'd see:
<font>| key_buffer_size | 402649088<br></font>Salin selepas log masukAs a general recommendation, on a dedicated MySQL server, you should allocate somewhere between 20 percent and 50 percent of your RAM for MySQL's key buffer. If you have a gigabyte of memory, start with something like:
<font>set-variable = key_buffer=128M<br></font>Salin selepas log masukor even:
<font>set-variable = key_buffer=256M<br></font>Salin selepas log masukin your my.cnf file and see if you notice a difference. Odds are that you will.
If you were only allowed to adjust one parameter on your MySQL server, the key buffer would be the one to try. Indexes are so important to the overall performance of any database server that it's hard to go wrong with making more room in memory for them.
If you do not specify a size for the key buffer, MySQL will use its default size, which is in the neighborhood of 8 MB. Of course, it makes little sense to set the value for your key buffer too high. Doing so could potentially starve the operating system of memory that it needs for disk buffering and other tasks.
It might also be helpful to look at how much index data you have on disk. Simply find the size of all the .MYI files under MySQL's data directory:
<font>$ du -sh */*.MYI<br></font>Salin selepas log masukKnowing how much index data you have, you can better judge how much benefit you are likely to see from increasing the size of the key buffer beyond a certain point. If some of your index files belong to tables that are infrequently used, there is little point in making room for them. But it's clear that any large or medium-sized database will normally benefit from a larger key buffer.

Alat AI Hot

Undresser.AI Undress
Apl berkuasa AI untuk mencipta foto bogel yang realistik

AI Clothes Remover
Alat AI dalam talian untuk mengeluarkan pakaian daripada foto.

Undress AI Tool
Gambar buka pakaian secara percuma

Clothoff.io
Penyingkiran pakaian AI

AI Hentai Generator
Menjana ai hentai secara percuma.

Artikel Panas

Alat panas

Notepad++7.3.1
Editor kod yang mudah digunakan dan percuma

SublimeText3 versi Cina
Versi Cina, sangat mudah digunakan

Hantar Studio 13.0.1
Persekitaran pembangunan bersepadu PHP yang berkuasa

Dreamweaver CS6
Alat pembangunan web visual

SublimeText3 versi Mac
Perisian penyuntingan kod peringkat Tuhan (SublimeText3)

Topik panas

Prestasi pertanyaan MySQL boleh dioptimumkan dengan membina indeks yang mengurangkan masa carian daripada kerumitan linear kepada kerumitan logaritma. Gunakan PreparedStatements untuk menghalang suntikan SQL dan meningkatkan prestasi pertanyaan. Hadkan hasil pertanyaan dan kurangkan jumlah data yang diproses oleh pelayan. Optimumkan pertanyaan penyertaan, termasuk menggunakan jenis gabungan yang sesuai, membuat indeks dan mempertimbangkan untuk menggunakan subkueri. Menganalisis pertanyaan untuk mengenal pasti kesesakan; gunakan caching untuk mengurangkan beban pangkalan data;

Membuat sandaran dan memulihkan pangkalan data MySQL dalam PHP boleh dicapai dengan mengikuti langkah berikut: Sandarkan pangkalan data: Gunakan arahan mysqldump untuk membuang pangkalan data ke dalam fail SQL. Pulihkan pangkalan data: Gunakan arahan mysql untuk memulihkan pangkalan data daripada fail SQL.

Bagaimana untuk memasukkan data ke dalam jadual MySQL? Sambung ke pangkalan data: Gunakan mysqli untuk mewujudkan sambungan ke pangkalan data. Sediakan pertanyaan SQL: Tulis pernyataan INSERT untuk menentukan lajur dan nilai yang akan dimasukkan. Laksanakan pertanyaan: Gunakan kaedah query() untuk melaksanakan pertanyaan sisipan Jika berjaya, mesej pengesahan akan dikeluarkan.

Salah satu perubahan utama yang diperkenalkan dalam MySQL 8.4 (keluaran LTS terkini pada 2024) ialah pemalam "Kata Laluan Asli MySQL" tidak lagi didayakan secara lalai. Selanjutnya, MySQL 9.0 mengalih keluar pemalam ini sepenuhnya. Perubahan ini mempengaruhi PHP dan apl lain

Perbandingan prestasi rangka kerja Java yang berbeza: Pemprosesan permintaan REST API: Vert.x adalah yang terbaik, dengan kadar permintaan 2 kali SpringBoot dan 3 kali Dropwizard. Pertanyaan pangkalan data: HibernateORM SpringBoot adalah lebih baik daripada Vert.x dan ORM Dropwizard. Operasi caching: Pelanggan Hazelcast Vert.x lebih unggul daripada mekanisme caching SpringBoot dan Dropwizard. Rangka kerja yang sesuai: Pilih mengikut keperluan aplikasi Vert.x sesuai untuk perkhidmatan web berprestasi tinggi, SpringBoot sesuai untuk aplikasi intensif data, dan Dropwizard sesuai untuk seni bina perkhidmatan mikro.

Untuk menggunakan prosedur tersimpan MySQL dalam PHP: Gunakan PDO atau sambungan MySQLi untuk menyambung ke pangkalan data MySQL. Sediakan penyata untuk memanggil prosedur tersimpan. Laksanakan prosedur tersimpan. Proses set keputusan (jika prosedur tersimpan mengembalikan hasil). Tutup sambungan pangkalan data.

Mencipta jadual MySQL menggunakan PHP memerlukan langkah berikut: Sambung ke pangkalan data. Buat pangkalan data jika ia tidak wujud. Pilih pangkalan data. Buat jadual. Laksanakan pertanyaan. Tutup sambungan.

Teknik berkesan untuk mengoptimumkan prestasi berbilang benang C++ termasuk mengehadkan bilangan utas untuk mengelakkan perbalahan sumber. Gunakan kunci mutex ringan untuk mengurangkan perbalahan. Optimumkan skop kunci dan minimumkan masa menunggu. Gunakan struktur data tanpa kunci untuk menambah baik keselarasan. Elakkan sibuk menunggu dan maklumkan urutan ketersediaan sumber melalui acara.
