C# Quick Start
This guide gets you started with gRPC in C# with a simple working example.
Note
This is a quick start guide for the gRPC C# implementation based on Core native library. See gRPC for .NET Quick Start for how to start with the “grpc-dotnet” implementation.
Prerequisites
Whether you’re using Windows, OS X, or Linux, you can follow thisexample by using either an IDE and its build tools,or by using the the .NET Core SDK command line tools.
First, make sure you have installed thegRPC C# prerequisites.You will also need Git to download the sample code.
Download the example
You’ll need a local copy of the example code to work through this quick start.Download the example code from our GitHub repository (the following commandclones the entire repository, but you just need the examples for this quick startand other tutorials):
# Clone the repository to get the example code:
$ git clone -b v1.28.1 https://github.com/grpc/grpc
$ cd grpc
This document will walk you through the “Hello World” example.The projects and source files can be found in the examples/csharp/Helloworld
directory.
The example in this walkthrough already adds the necessarydependencies for you (Grpc
, Grpc.Tools
and Google.Protobuf
NuGet packages).
Build the example
Using Visual Studio (or Visual Studio for Mac)
- Open the solution
Greeter.sln
with Visual Studio - Build the solution
Using .NET Core SDK from the command line
From the examples/csharp/Helloworld
directory:
> dotnet build Greeter.sln
Note
If you want to use gRPC C# from a project that uses the “classic” .csproj files (supported by Visual Studio 2013, 2015 and older versions of Mono), please refer to theGreeter using “classic” .csproj example.
Run a gRPC application
From the examples/csharp/Helloworld
directory:
- Run the server:
> cd GreeterServer
> dotnet run -f netcoreapp2.1
- From another terminal, run the client:
> cd GreeterClient
> dotnet run -f netcoreapp2.1
Congratulations! You’ve just run a client-server application with gRPC.
Update a gRPC service
Now let’s look at how to update the application with an extra method on theserver for the client to call. Our gRPC service is defined using protocolbuffers; you can find out lots more about how to define a service in a .proto
file ingRPC Basics: C#. For now all you need to know is that both theserver and the client “stub” have a SayHello
RPC method that takes aHelloRequest
parameter from the client and returns a HelloResponse
from theserver, and that this method is defined like this:
// The greeting service definition.
service Greeter {
// Sends a greeting
rpc SayHello (HelloRequest) returns (HelloReply) {}
}
// The request message containing the user's name.
message HelloRequest {
string name = 1;
}
// The response message containing the greetings
message HelloReply {
string message = 1;
}
Let’s update this so that the Greeter
service has two methods. Editexamples/protos/helloworld.proto
and update it with a new SayHelloAgain
method, with the same request and response types:
// The greeting service definition.
service Greeter {
// Sends a greeting
rpc SayHello (HelloRequest) returns (HelloReply) {}
// Sends another greeting
rpc SayHelloAgain (HelloRequest) returns (HelloReply) {}
}
// The request message containing the user's name.
message HelloRequest {
string name = 1;
}
// The response message containing the greetings
message HelloReply {
string message = 1;
}
Remember to save the file!
Generate gRPC code
Next we need to update the gRPC code used by our application to use the new service definition.
The Grpc.Tools
NuGet package contains the protoc and protobuf C# plugin binaries neededto generate the code. Starting from version 1.17 the package also integrates withMSBuild to provideautomatic C# code generationfrom .proto
files.
This example project already depends on the Grpc.Tools.1.28.1
NuGet package so just re-building the solutionis enough to regenerate the code from our modified .proto
file.
You can rebuild just like we first built the originalexample by running dotnet build Greeter.sln
or by clicking “Build” in Visual Studio.
The build regenerates the following filesunder the Greeter/obj/Debug/TARGET_FRAMEWORK
directory:
Helloworld.cs
contains all the protocol buffer code to populate,serialize, and retrieve our request and response message typesHelloworldGrpc.cs
provides generated client and server classes,including:- an abstract class
Greeter.GreeterBase
to inherit from when definingGreeter service implementations - a class
Greeter.GreeterClient
that can be used to access remote Greeterinstances
- an abstract class
Update and run the application
We now have new generated server and client code, but we still need to implementand call the new method in the human-written parts of our example application.
Update the server
With the Greeter.sln
open in your IDE, open GreeterServer/Program.cs
.Implement the new method by editing the GreeterImpl class like this:
class GreeterImpl : Greeter.GreeterBase
{
// Server side handler of the SayHello RPC
public override Task<HelloReply> SayHello(HelloRequest request, ServerCallContext context)
{
return Task.FromResult(new HelloReply { Message = "Hello " + request.Name });
}
// Server side handler for the SayHelloAgain RPC
public override Task<HelloReply> SayHelloAgain(HelloRequest request, ServerCallContext context)
{
return Task.FromResult(new HelloReply { Message = "Hello again " + request.Name });
}
}
Update the client
With the same Greeter.sln
open in your IDE, open GreeterClient/Program.cs
.Call the new method like this:
public static void Main(string[] args)
{
Channel channel = new Channel("127.0.0.1:50051", ChannelCredentials.Insecure);
var client = new Greeter.GreeterClient(channel);
String user = "you";
var reply = client.SayHello(new HelloRequest { Name = user });
Console.WriteLine("Greeting: " + reply.Message);
var secondReply = client.SayHelloAgain(new HelloRequest { Name = user });
Console.WriteLine("Greeting: " + secondReply.Message);
channel.ShutdownAsync().Wait();
Console.WriteLine("Press any key to exit...");
Console.ReadKey();
}
Rebuild the modified example
Rebuild the newly modified example just like we first built the originalexample by running dotnet build Greeter.sln
or by clicking “Build” in Visual Studio.
Run!
Just like we did before, from the examples/csharp/Helloworld
directory:
- Run the server:
> cd GreeterServer
> dotnet run -f netcoreapp2.1
- From another terminal, run the client:
> cd GreeterClient
> dotnet run -f netcoreapp2.1
What’s next
- Read a full explanation of how gRPC works inWhat is gRPC?andgRPC Concepts.
- Work through a more detailed tutorial ingRPC Basics: C#.
- Explore the gRPC C# core API in itsreferencedocumentation.