


How to use thinkorm to quickly implement the full-text search function of the database
How to use thinkorm to quickly implement the full-text search function of the database
Introduction:
In the modern Internet era, the amount of data is growing explosively. How to efficiently search and retrieve large amounts of text data has become a problem. An important question. Full-text search is a technical means to achieve comprehensive search of text content through search engines. In traditional relational databases, implementing the full-text search function is more complicated, but using some ORM frameworks can solve this problem well. This article will use thinkorm as an example to introduce how to quickly implement the full-text search function of the database through thinkorm.
Step 1: Install thinkorm
First, we need to install thinkorm in the project. Enter the project root directory and execute the following command:
pip install thinkorm
Step 2: Create a database and create a table
Create a database in the project and create a table named documents
, use To store documents to be searched. You can use the following SQL statement:
CREATE TABLE documents ( id INT AUTO_INCREMENT PRIMARY KEY, title VARCHAR(255), content LONGTEXT, created_at TIMESTAMP DEFAULT CURRENT_TIMESTAMP );
Step 3: Define the model class
Using thinkorm, we need to define a model class for operating the documents
table. Create a Document
class in the project's model file and inherit the Model
class. The code example is as follows:
from thinkorm import Model class Document(Model): table = 'documents'
Step 4: Add a full-text search column
In order to implement the full-text search function, we need to add a full-text search column to the documents
table to store the document Full text index. You can use the following SQL statement to add a full-text search column:
ALTER TABLE documents ADD COLUMN content_fts TEXT;
Step 5: Define the search method
Define a search
method in the Document
class for execution research all. The code example is as follows:
class Document(Model): table = 'documents' @classmethod def search(cls, keyword): return cls.where('MATCH(content_fts) AGAINST(?)', (keyword,))
Step 6: Create a full-text index
In order to enable the database to perform full-text search, we need to create a full-text index on the documents
table. You can use the following SQL statement to create a full-text index:
ALTER TABLE documents ADD FULLTEXT INDEX ft_index (content_fts);
Step 7: Perform a full-text search
Now we can use the search
method to perform a full-text search. The code example is as follows:
result = Document.search('thinkorm') for document in result: print(document.title) print(document.content)
Summary:
Through the above steps, we can quickly use thinkorm to implement the full-text search function of the database. Using full-text search, we can efficiently search and retrieve large amounts of text data, improving the utilization value of the data. Of course, this is just one example. In actual use, there are more tuning and details that need to be processed according to specific situations. I hope this article can be helpful to everyone when implementing the full-text search function.
The above is the detailed content of How to use thinkorm to quickly implement the full-text search function of the database. For more information, please follow other related articles on the PHP Chinese website!

Hot AI Tools

Undresser.AI Undress
AI-powered app for creating realistic nude photos

AI Clothes Remover
Online AI tool for removing clothes from photos.

Undress AI Tool
Undress images for free

Clothoff.io
AI clothes remover

AI Hentai Generator
Generate AI Hentai for free.

Hot Article

Hot Tools

Notepad++7.3.1
Easy-to-use and free code editor

SublimeText3 Chinese version
Chinese version, very easy to use

Zend Studio 13.0.1
Powerful PHP integrated development environment

Dreamweaver CS6
Visual web development tools

SublimeText3 Mac version
God-level code editing software (SublimeText3)

Hot Topics



Go language is an efficient, concise and easy-to-learn programming language. It is favored by developers because of its advantages in concurrent programming and network programming. In actual development, database operations are an indispensable part. This article will introduce how to use Go language to implement database addition, deletion, modification and query operations. In Go language, we usually use third-party libraries to operate databases, such as commonly used sql packages, gorm, etc. Here we take the sql package as an example to introduce how to implement the addition, deletion, modification and query operations of the database. Assume we are using a MySQL database.

Hibernate polymorphic mapping can map inherited classes to the database and provides the following mapping types: joined-subclass: Create a separate table for the subclass, including all columns of the parent class. table-per-class: Create a separate table for subclasses, containing only subclass-specific columns. union-subclass: similar to joined-subclass, but the parent class table unions all subclass columns.

Apple's latest releases of iOS18, iPadOS18 and macOS Sequoia systems have added an important feature to the Photos application, designed to help users easily recover photos and videos lost or damaged due to various reasons. The new feature introduces an album called "Recovered" in the Tools section of the Photos app that will automatically appear when a user has pictures or videos on their device that are not part of their photo library. The emergence of the "Recovered" album provides a solution for photos and videos lost due to database corruption, the camera application not saving to the photo library correctly, or a third-party application managing the photo library. Users only need a few simple steps

HTML cannot read the database directly, but it can be achieved through JavaScript and AJAX. The steps include establishing a database connection, sending a query, processing the response, and updating the page. This article provides a practical example of using JavaScript, AJAX and PHP to read data from a MySQL database, showing how to dynamically display query results in an HTML page. This example uses XMLHttpRequest to establish a database connection, send a query and process the response, thereby filling data into page elements and realizing the function of HTML reading the database.

How to use MySQLi to establish a database connection in PHP: Include MySQLi extension (require_once) Create connection function (functionconnect_to_db) Call connection function ($conn=connect_to_db()) Execute query ($result=$conn->query()) Close connection ( $conn->close())

To handle database connection errors in PHP, you can use the following steps: Use mysqli_connect_errno() to obtain the error code. Use mysqli_connect_error() to get the error message. By capturing and logging these error messages, database connection issues can be easily identified and resolved, ensuring the smooth running of your application.

PHP is a back-end programming language widely used in website development. It has powerful database operation functions and is often used to interact with databases such as MySQL. However, due to the complexity of Chinese character encoding, problems often arise when dealing with Chinese garbled characters in the database. This article will introduce the skills and practices of PHP in handling Chinese garbled characters in databases, including common causes of garbled characters, solutions and specific code examples. Common reasons for garbled characters are incorrect database character set settings: the correct character set needs to be selected when creating the database, such as utf8 or u

Using the database callback function in Golang can achieve: executing custom code after the specified database operation is completed. Add custom behavior through separate functions without writing additional code. Callback functions are available for insert, update, delete, and query operations. You must use the sql.Exec, sql.QueryRow, or sql.Query function to use the callback function.
