Files
fission-src/environments/dotnet20
Soam VasaniandGitHub 6a394889f6 dotnet20 build fixes (#365)
Fix the dotnet20 build, use docker for builds, and re-enable dotnet20 in the release script.
2017-09-28 23:36:11 -07:00
..
2017-09-28 23:36:11 -07:00
2017-09-21 11:30:15 -07:00
2017-09-21 11:30:15 -07:00
2017-09-21 11:30:15 -07:00
2017-09-21 11:30:15 -07:00
2017-09-28 23:36:11 -07:00
2017-09-28 23:36:11 -07:00

Fission: dotnet 2.0 C# Environment

This is a simple dotnet core 2.0 C# environment for Fission.

It's a Docker image containing the dotnet 2.0.0 runtime. The image uses Kestrel with Nancy to host the internal web server and uses Roslyn to compile the uploaded code.

The image supports compiling and running code with types defined in mscorlib and does not at present support other library references. One workaround for this would be to add the references to this project's project.json file and rebuild the container.

The environment works via convention where you create a C# class called FissionFunction which has a method named Execute taking a single parameter, a FissionContext object.

The FissionContext object gives access to the arguments and other items like logging. Please see FissionContext.cs for public API.

Example of simplest possible class to be executed:

using System;
using Fission.DotNetCore.Api;

public class FissionFunction {
    public string Execute(FissionContext context) {
        return null;
    }
}

Please see examples below.

Rebuilding and pushing the image

To rebuild the image you need either a computer with dotnet core 2.0.0 installed or else you will have to map the source directory into a container containing the dotnet core 2.0.0 environment.

Locally installed Dotnet core 2.0.0

Simply move to the source directory in a terminal and run the ./build.sh script.

The script will restore dependencies, compile a release build and and build the container. If you need to change the name of the container simply change it in the script.

After the build finishes push the new image to a Docker registry using the standard procedure.

Build in a container

Move to the directory containing the source and start the Docker container with dotnet and mount the current directory to a build location:

docker run -it --rm -v $PWD:/build microsoft/dotnet

Move to the build directory inside the container and restore the packages:

cd /build 
dotnet restore fission-dotnet20.csproj
log  : Restoring packages for /source/project.json...
log  : Installing System.Net.WebSockets 4.0.0.
log  : Installing runtime.native.System.IO.Compression 4.1.0.
...

Compile and publish a release build of the source to the 'out' folder:

dotnet publish -c Release -o out
Publishing source for .NETCoreApp,Version
...

Exit the build container and build the Docker container on the local host:

exit
docker build -t USER/dotnet20-env .

After the build finishes push the new image to a Docker registry using the standard procedure.

Echo example

Setup fission environment

First you need to setup the fission according to your cluster setup as specified here: https://github.com/fission/fission

Create the class to run

Secondly you need to create a file /tmp/func.cs containing the following code:

using System;
using Fission.DotNetCore.Api;

public class FissionFunction 
{
    public string Execute(FissionContext context){
        context.Logger.WriteInfo("executing.. {0}", context.Arguments["text"]);
        return (string)context.Arguments["text"];
    }
}

Run the example

Lastly to run the example:

$ fission env create --name dotnet --image fission/dotnet20-env

$ fission function create --name echo --env dotnet --code /tmp/func.cs

$ fission route create --method GET --url /echo --function echo

$ curl http://$FISSION_ROUTER/echo?text=hello%20world!
  hello world

Addition service example

Setup fission environment

First you need to setup the fission according to your cluster setup as specified here: https://github.com/fission/fission

Create the class to run

Secondly you need to create a file /tmp/func.cs containing the following code:

using System;
using Fission.DotNetCore.Api;

public class FissionFunction 
{
    public string Execute(FissionContext context){
        var x = Convert.ToInt32(context.Arguments["x"]);
        var y = Convert.ToInt32(context.Arguments["y"]);
        return (x+y).ToString();
    }
}

Run the example

Lastly to run the example:

$ fission env create --name dotnet --image fission/dotnet20-env

$ fission function create --name addition --env dotnet --code /tmp/func.cs

$ fission route create --method GET --url /add --function addition

$ curl "http://$FISSION_ROUTER/add?x=30&y=12"
  42

Accessing http request information example

Setup fission environment

First you need to setup the fission according to your cluster setup as specified here: https://github.com/fission/fission

Create the class to run

Secondly you need to create a file /tmp/func.cs containing the following code:

using System;
using Fission.DotNetCore.Api;

public class FissionFunction
{
    public string Execute(FissionContext context){
        var buffer = new System.Text.StringBuilder();
        foreach(var header in context.Request.Headers){
                buffer.AppendLine(header.Key);
                foreach(var item in header.Value){
                        buffer.AppendLine($"\t{item}");
                }
        }
        buffer.AppendLine($"Url: {context.Request.Url}, method: {context.Request.Method}");
        return buffer.ToString();
    }
}

Run the example

Lastly to run the example:

$ fission env create --name dotnet --image fission/dotnet20-env

$ fission function create --name httpinfo --env dotnet --code /tmp/func.cs

$ fission route create --method GET --url /http_info --function httpinfo

$ curl "http://$FISSION_ROUTER/http_info"
Accept
	*/*;q=1
Host
	fissionserver:8888
User-Agent
	curl/7.47.0
Url: http://fissionserver:8888, method: GET

Accessing http request body example

Setup fission environment

First you need to setup the fission according to your cluster setup as specified here: https://github.com/fission/fission

Create the class to run

Secondly you need to create a file /tmp/func.cs containing the following code:

using System.IO;
using System.Runtime.Serialization.Json;
using Fission.DotNetCore.Api;

public class FissionFunction
{
    public string Execute(FissionContext context)
    {
        var person = Person.Deserialize(context.Request.Body);
        return $"Hello, my name is {person.Name} and I am {person.Age} years old.";
    }
}

public class Person
{
    public string Name { get; set; }
    public int Age { get; set; }

    public static Person Deserialize(Stream json)
    {
        var serializer = new DataContractJsonSerializer(typeof(Person));
        return (Person)serializer.ReadObject(json);
    }
}

Run the example

Lastly to run the example:

$ fission env create --name dotnet --image fission/dotnet20-env

$ fission function create --name httpbody --env dotnet --code /tmp/func.cs

$ fission route create --method GET --url /http_body --function httpbody

$ curl -XPOST "http://$FISSION_ROUTER/http_body" -d '{ "Name":"Arthur", "Age":42}'
Hello, my name is Arthur and I am 42 years old.

Developing/debugging the enviroment locally

The easiest way to debug the environment is to open the directory in Visual Studio Code (VSCode) as that will setup debugger for you the first time.

Remember to install the excellent extension "C# for Visual Studio Code(powered by OmniSharp)" to get statement completion

The class ExecutorModule contain preprocessor directive overriding where the input code file should be found:

#if DEBUG
        private const string CODE_PATH = "/tmp/func.cs";
#else
        private const string CODE_PATH = "/userfunc/user";
#endif

So what you need to do is:

  1. Open the directory in VSCode. This will prompt restore of packages and query is debugger setup is needed. Accept both prompts.
  2. Press F5 to start the web server. Set breakpoints etc..
  3. Add a code file containing valid C# at /tmp/func.cs
  4. Specialize the service with curl via post
$ curl -XPOST http://localhost:8888/specialize
  1. Call your function with curl
$ curl -XGET http://localhost:8888