Hbase QualifierFilter用于过滤qualifier,也就是一个列族里面data:xxx,冒号后面的字符串。 =。= package com.fatkun.filter.comparison;import java.io.IOException;import org.apache.hadoop.conf.Configuration;import org.apache.hadoop.hbase.HBaseCon
Hbase QualifierFilter用于过滤qualifier,也就是一个列族里面data:xxx,冒号后面的字符串。 =。=
package com.fatkun.filter.comparison; import java.io.IOException; import org.apache.hadoop.conf.Configuration; import org.apache.hadoop.hbase.HBaseConfiguration; import org.apache.hadoop.hbase.HColumnDescriptor; import org.apache.hadoop.hbase.HTableDescriptor; import org.apache.hadoop.hbase.client.Get; import org.apache.hadoop.hbase.client.HBaseAdmin; import org.apache.hadoop.hbase.client.HTable; import org.apache.hadoop.hbase.client.Put; import org.apache.hadoop.hbase.client.Result; import org.apache.hadoop.hbase.client.ResultScanner; import org.apache.hadoop.hbase.client.Scan; import org.apache.hadoop.hbase.filter.BinaryComparator; import org.apache.hadoop.hbase.filter.CompareFilter; import org.apache.hadoop.hbase.filter.FamilyFilter; import org.apache.hadoop.hbase.filter.Filter; import org.apache.hadoop.hbase.filter.QualifierFilter; import org.apache.hadoop.hbase.util.Bytes; public class TestHbaseQualifierFilter { String tableName = "test_qualifier_filter"; Configuration config = HBaseConfiguration.create(); /** * 部分代码来自hbase权威指南 * @throws IOException */ public void testRowFilter() throws IOException { HTable table = new HTable(config, tableName); Scan scan = new Scan(); System.out.println("只列出小于col5的列"); Filter filter1 = new QualifierFilter(CompareFilter.CompareOp.LESS, new BinaryComparator(Bytes.toBytes("col5"))); scan.setFilter(filter1); ResultScanner scanner1 = table.getScanner(scan); for (Result res : scanner1) { System.out.println(res); } scanner1.close(); System.out.println("get也可以设置filter"); Get get1 = new Get(Bytes.toBytes("row003")); get1.setFilter(filter1); Result result1 = table.get(get1); System.out.println("Result of get(): " + result1); } /** * 初始化数据 */ public void init() { // 创建表和初始化数据 try { HBaseAdmin admin = new HBaseAdmin(config); if (!admin.tableExists(tableName)) { HTableDescriptor htd = new HTableDescriptor(tableName); HColumnDescriptor hcd1 = new HColumnDescriptor("data1"); htd.addFamily(hcd1); HColumnDescriptor hcd2 = new HColumnDescriptor("data2"); htd.addFamily(hcd2); HColumnDescriptor hcd3 = new HColumnDescriptor("data3"); htd.addFamily(hcd3); admin.createTable(htd); } HTable table = new HTable(config, tableName); table.setAutoFlush(false); int count = 50; for (int i = 1; i <p class="copyright"> 原文地址:Hbase QualifierFilter, 感谢原作者分享。 </p>

InnoDBBufferPool reduces disk I/O by caching data and indexing pages, improving database performance. Its working principle includes: 1. Data reading: Read data from BufferPool; 2. Data writing: After modifying the data, write to BufferPool and refresh it to disk regularly; 3. Cache management: Use the LRU algorithm to manage cache pages; 4. Reading mechanism: Load adjacent data pages in advance. By sizing the BufferPool and using multiple instances, database performance can be optimized.

Compared with other programming languages, MySQL is mainly used to store and manage data, while other languages such as Python, Java, and C are used for logical processing and application development. MySQL is known for its high performance, scalability and cross-platform support, suitable for data management needs, while other languages have advantages in their respective fields such as data analytics, enterprise applications, and system programming.

MySQL is worth learning because it is a powerful open source database management system suitable for data storage, management and analysis. 1) MySQL is a relational database that uses SQL to operate data and is suitable for structured data management. 2) The SQL language is the key to interacting with MySQL and supports CRUD operations. 3) The working principle of MySQL includes client/server architecture, storage engine and query optimizer. 4) Basic usage includes creating databases and tables, and advanced usage involves joining tables using JOIN. 5) Common errors include syntax errors and permission issues, and debugging skills include checking syntax and using EXPLAIN commands. 6) Performance optimization involves the use of indexes, optimization of SQL statements and regular maintenance of databases.

MySQL is suitable for beginners to learn database skills. 1. Install MySQL server and client tools. 2. Understand basic SQL queries, such as SELECT. 3. Master data operations: create tables, insert, update, and delete data. 4. Learn advanced skills: subquery and window functions. 5. Debugging and optimization: Check syntax, use indexes, avoid SELECT*, and use LIMIT.

MySQL efficiently manages structured data through table structure and SQL query, and implements inter-table relationships through foreign keys. 1. Define the data format and type when creating a table. 2. Use foreign keys to establish relationships between tables. 3. Improve performance through indexing and query optimization. 4. Regularly backup and monitor databases to ensure data security and performance optimization.

MySQL is an open source relational database management system that is widely used in Web development. Its key features include: 1. Supports multiple storage engines, such as InnoDB and MyISAM, suitable for different scenarios; 2. Provides master-slave replication functions to facilitate load balancing and data backup; 3. Improve query efficiency through query optimization and index use.

SQL is used to interact with MySQL database to realize data addition, deletion, modification, inspection and database design. 1) SQL performs data operations through SELECT, INSERT, UPDATE, DELETE statements; 2) Use CREATE, ALTER, DROP statements for database design and management; 3) Complex queries and data analysis are implemented through SQL to improve business decision-making efficiency.

The basic operations of MySQL include creating databases, tables, and using SQL to perform CRUD operations on data. 1. Create a database: CREATEDATABASEmy_first_db; 2. Create a table: CREATETABLEbooks(idINTAUTO_INCREMENTPRIMARYKEY, titleVARCHAR(100)NOTNULL, authorVARCHAR(100)NOTNULL, published_yearINT); 3. Insert data: INSERTINTObooks(title, author, published_year)VA


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