


What is gRPC's `mustEmbedUnimplemented` Method and How Does it Ensure Forward Compatibility?
Understanding gRPC's mustEmbedUnimplemented Method*
In its most recent update, gRPC-go has introduced the mustEmbedUnimplemented* method to ensure forward compatibility in its servers. But what exactly does it do?
Prior to mustEmbedUnimplemented*
Previously, registering a server implementation involved registering it directly, as shown:
pb.RegisterFooBarServiceServer( server, &FooBarServer{}, // or whatever you use to construct the server impl )
If the server lacked certain method implementations, it would result in errors during compilation.
Introducing mustEmbedUnimplemented*
With the updated protoc-gen-grpc-go compiler, forward-compatibility becomes the default. This means:
- Mandating mustEmbedUnimplementedFooBarServiceServer: Including this statement in server implementations prevents compile-time errors when new methods are not explicitly implemented. However, if unimplemented methods are called, it triggers a run-time error (code.Unimplemented).
- Opting Out with Unsafe FooBarServiceServer: Developers can opt out of forward compatibility by embedding UnsafeFooBarServiceServer instead. This interface incorporates the mustEmbedUnimplementedFooBarServiceServer() method, eliminating the compile-time error while still allowing explicit implementation of new handlers.
Configuring Forward Compatibility
Additionally, forward compatibility can be disabled by setting the following option when using protoc-gen-grpc-go:
protoc --go-grpc_out=require_unimplemented_servers=false:.
Benefits
mustEmbedUnimplemented* ensures that servers are always forward compatible, preventing unexpected errors caused by unimplemented methods. By opting out with Unsafe FooBarServiceServer, developers can maintain backward compatibility while still adhering to the principles of forward compatibility.
The above is the detailed content of What is gRPC's `mustEmbedUnimplemented` Method and How Does it Ensure Forward Compatibility?. 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

Video Face Swap
Swap faces in any video effortlessly with our completely free AI face swap tool!

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





OpenSSL, as an open source library widely used in secure communications, provides encryption algorithms, keys and certificate management functions. However, there are some known security vulnerabilities in its historical version, some of which are extremely harmful. This article will focus on common vulnerabilities and response measures for OpenSSL in Debian systems. DebianOpenSSL known vulnerabilities: OpenSSL has experienced several serious vulnerabilities, such as: Heart Bleeding Vulnerability (CVE-2014-0160): This vulnerability affects OpenSSL 1.0.1 to 1.0.1f and 1.0.2 to 1.0.2 beta versions. An attacker can use this vulnerability to unauthorized read sensitive information on the server, including encryption keys, etc.

Queue threading problem in Go crawler Colly explores the problem of using the Colly crawler library in Go language, developers often encounter problems with threads and request queues. �...

The library used for floating-point number operation in Go language introduces how to ensure the accuracy is...

Backend learning path: The exploration journey from front-end to back-end As a back-end beginner who transforms from front-end development, you already have the foundation of nodejs,...

The difference between string printing in Go language: The difference in the effect of using Println and string() functions is in Go...

This article introduces a variety of methods and tools to monitor PostgreSQL databases under the Debian system, helping you to fully grasp database performance monitoring. 1. Use PostgreSQL to build-in monitoring view PostgreSQL itself provides multiple views for monitoring database activities: pg_stat_activity: displays database activities in real time, including connections, queries, transactions and other information. pg_stat_replication: Monitors replication status, especially suitable for stream replication clusters. pg_stat_database: Provides database statistics, such as database size, transaction commit/rollback times and other key indicators. 2. Use log analysis tool pgBadg

The problem of using RedisStream to implement message queues in Go language is using Go language and Redis...

Two ways to define structures in Go language: the difference between var and type keywords. When defining structures, Go language often sees two different ways of writing: First...
