High concurrency and distribution of MySql: How to deal with massive data
With the development of the Internet, the amount of data is getting larger and larger, and the traffic is getting higher and higher, which puts forward higher requirements for the high concurrency and distributed capabilities of the database. As a commonly used relational database, MySql has accumulated certain experience in how to deal with massive data. This article will explore MySql's high concurrency and distributed response strategies.
1. High concurrency response strategy
- Reduce database load
When concurrency is high, the speed of database processing requests will slow down. If the request is not received Response will always occupy connection resources, causing other requests to be blocked. The following methods can be used to reduce the load on the database:
(1) Use cache to reduce the number of database accesses. The cache can store some frequently accessed data and reduce the pressure on the database.
(2) Optimize SQL statements and reduce the number of queries. You can use indexing, paging, etc. to reduce the number of queries and reduce the database load.
- Sub-database and sub-table
Sub-database and sub-table is a method to expand the processing capabilities of the database. It can disperse the data into multiple databases or multiple tables. Reduce the pressure on a single database or table.
(1) Split database: Split the data into multiple databases according to business. Each database handles its own business, which can effectively reduce the pressure on a single database.
(2) Table splitting: Split the data into multiple tables according to a certain rule. Each table processes part of the data, such as splitting according to time, region, etc., which can effectively utilize database resources and improve processing. efficiency.
- Read-write separation
Read-write separation improves the processing capabilities of the database by separating read operations and write operations into different database servers. Read operations can be performed on the slave server, reducing the load on the master server.
2. Distributed response strategy
- Data consistency
In a distributed system, the data of multiple nodes may be inconsistent, so the data Consistency is a very important issue. In MySql, the data consistency problem can be solved through the following methods:
(1) Use distributed transactions: Distributed transactions can ensure that transactions on multiple nodes are consistent and can be implemented through the XA protocol.
(2) Use strong consistency algorithms: Some strong consistency algorithms, such as Paxos and Raft, can ensure data consistency, but have relatively high requirements for performance and scalability.
- Load Balancing
In a distributed system, the load between nodes may be different, so load balancing is required to ensure system stability and high performance. Commonly used load balancing algorithms include round robin, random and least connections.
- Data sharding
Data sharding is a typical solution in distributed systems, which can disperse data to multiple nodes to improve system processing ability. In MySql, distributed storage of data can be achieved through horizontal sharding and vertical sharding.
Horizontal sharding is to split data into multiple nodes according to a certain rule, such as splitting according to user ID or order ID. Vertical sharding is to split the data into multiple nodes according to the columns of the table, such as storing the basic information and detailed information of the order in different nodes.
To sum up, MySql is a commonly used relational database and has certain optimization strategies to deal with the challenges of high concurrency and distribution. For applications that need to process massive data, in addition to MySql, you can also consider using some big data technologies, such as Hadoop or Spark to process massive data.
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