C# reflection – load assembly and invoke a method if it exists

Since this seems to be a popular question, here’s the complete source code example on how to do it.

Suppose we have a sample assembly, MyAssembly.dll, with a class MyClass. We wish to dynamically load it and invoke its methods. MyAssembly code:

namespace MyAssembly
{
    public class MyClass
    {
        public int X { get; set; }
        public int Y { get; set; }

        public MyClass(int initialX, int initialY)
        {
            X = initialX;
            Y = initialY;
        }

        public int MyMethod(int count, string text)
        {
            Console.WriteLine("This is a normal method.");
            Console.WriteLine("Count: {0}", count);
            Console.WriteLine("Text: {0}", text);

            return this.X + this.Y;
        }

        public static void StaticMethod(int count, float radius)
        {
            Console.WriteLine("This is a static method call.");
            Console.WriteLine("Count: {0}", count);
            Console.WriteLine("Radius: {0}", radius);
        }
    }
}

First, we would like to create an instance of the class using the constructor MyClass(int initialX, int initialY), then call the method public int MyMethod(int count, string text). Here’s how you do it from another project (e.g. a console application):

static void Main(string[] args)
{
    //
    // 1. Load assembly "MyAssembly.dll" from file path. Specify that we will be using class MyAssembly.MyClass
    //
    Assembly asm = Assembly.LoadFrom(@"C:\Path\MyAssembly.dll");
    Type t = asm.GetType("MyAssembly.MyClass");

    //
    // 2. We will be invoking a method: 'public int MyMethod(int count, string text)'
    //
    var methodInfo = t.GetMethod("MyMethod", new Type[] { typeof(int), typeof(string) });
    if (methodInfo == null)
    {
        // never throw generic Exception - replace this with some other exception type
        throw new Exception("No such method exists.");
    }

    //
    // 3. Define parameters for class constructor 'MyClass(int initialX, int initialY)'
    //
    object[] constructorParameters = new object[2];
    constructorParameters[0] = 999; // First parameter.
    constructorParameters[1] = 2;   // Second parameter.

    //
    // 4. Create instance of MyClass.
    //
    var o = Activator.CreateInstance(t, constructorParameters);

    //
    // 5. Specify parameters for the method we will be invoking: 'int MyMethod(int count, string text)'
    //
    object[] parameters = new object[2];
    parameters[0] = 124;            // 'count' parameter
    parameters[1] = "Some text.";   // 'text' parameter

    //
    // 6. Invoke method 'int MyMethod(int count, string text)'
    //
    var r = methodInfo.Invoke(o, parameters);
    Console.WriteLine(r);
}

Calling the static method public static void StaticMethod(int count, float radius) looks like this:

var methodInfoStatic = t.GetMethod("StaticMethod");
if (methodInfoStatic == null)
{
    // never throw generic Exception - replace this with some other exception type
    throw new Exception("No such static method exists.");
}

// Specify parameters for static method: 'public static void MyMethod(int count, float radius)'
object[] staticParameters = new object[2];
staticParameters[0] = 10;
staticParameters[1] = 3.14159f;

// Invoke static method
methodInfoStatic.Invoke(o, staticParameters);

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