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Walkthrough: Part 1 - Creating a Basic Project System

In Visual Studio, projects are the containers that developers use to organize source code files and other assets that appear in Solution Explorer. Projects let you organize, build, debug, and deploy source code and create references to Web services, databases, and other resources.

Typically, projects are specified by the contents of a project file, for example, a .csproj file for a Visual C# project. You can create your own project type that has your own project file name extension. For more information about project types, see Project Types.

This walkthrough shows you how to create a project type that has the project file name extension .myproj. This walkthrough borrows from the existing Visual C# project system.

Note

For an end-to-end sample of a complete language project system, see the IronPython Sample Deep Dive in Visual Studio Extensibility Samples.

This walkthrough teaches how to accomplish these tasks:

  • Create a basic project type.

  • Create a basic project template.

  • Register the project template with Visual Studio.

  • Create a project instance by opening the New Project dialog box and then using your template.

  • Create a project factory for your project system.

  • Create a project node for your project system.

  • Add custom icons for the project system.

  • Implement basic template parameter substitution.

Note

The steps in this walkthrough are based on a C# project. However, except for specifics such as file name extensions and code, you can use the same steps for a Visual Basic project.

Prerequisites

To follow this walkthrough, you must install the Visual Studio 2013 SDK. For more information, see Visual Studio Software Development Kit (SDK).

Creating a Basic Project Type

Project types, just like most Visual Studio extensions, are implemented by VSPackages. For more information about VSPackages, see Walkthroughs for Customizing Visual Studio By Using VSPackages. To create a project type, you must first create a VSPackage.

Create a C# VSPackage project named SimpleProject. (File, New, Project and then C#, Extensibility, Visual Studio Package). Make sure that you specify that the programming language is C#. Also, on the Basic Package Information page, make sure that the Company name is Microsoft IT. This name provides the namespace information in the code you will add in later steps.

Creating a Basic Project Template

Now, you can modify this basic VSPackage to implement the new .myproj project type. To create a project that is based on the .myproj project type, Visual Studio has to know which files, resources, and references to add to the new project. To provide this information, put project files in a project template folder. Then, when a user uses the .myproj project type in the New Project dialog box to create a project, the files are copied to the new project.

To create a basic project template

  1. Add three folders to the project, one under the other: Templates\Projects\SimpleProject. (In Solution Explorer, right-click the SimpleProject project node, point to Add, and then click New Folder. Name the folder Templates. In the Templates folder, add a folder named Projects. In the Projects folder, add a folder named SimpleProject.)

  2. In the Projects\SimpleProject folder add an icon file named SimpleProject.ico. When you click Add, the icon editor opens.

  3. Make the icon distinctive. This icon will appear in the New Project dialog box later in the walkthrough.

    Simple Project Icon

  4. Save the icon and close the icon editor.

  5. In the Projects\SimpleProject folder, add a Class item named Program.cs.

  6. Replace the existing code with the following lines.

    using System;
    using System.Collections.Generic;
    using System.Text;
    
    namespace $nameSpace$
    {
        public class $className$
        {
            static void Main(string[] args)
            {
                Console.WriteLine("Hello VSX!!!");
                Console.ReadKey();
            }
        }
    }
    

Note

Files in the project template may contain template parameters that can be programmatically modified when the files are copied to a new project. Later in the walkthrough, you will learn how to accomplish this for the template parameters $nameSpace$ and $className$.

  1. Save the file and close the code editor.

  2. Copy the AssemblyInfo.cs file from the Properties folder to the Projects\SimpleProject folder.

  3. In the Properties window of the copied file, set the Build Action to None.

  4. In the Projects\SimpleProject folder add an XML file named SimpleProject.myproj.

    Note

    The file name extension for all projects of this type is .myproj. If you want to change it, you must change it everywhere it is mentioned in the walkthrough.

  5. Replace the existing content with the following lines.

    <Project DefaultTargets="Build" xmlns="https://schemas.microsoft.com/developer/msbuild/2003">
      <PropertyGroup>
        <Configuration Condition=" '$(Configuration)' == '' ">Debug</Configuration>
        <SchemaVersion>2.0</SchemaVersion>
        <ProjectGuid>$guid1$</ProjectGuid>
        <OutputType>Exe</OutputType>
        <RootNamespace>MyRootNamespace</RootNamespace>
        <AssemblyName>MyAssemblyName</AssemblyName>
        <EnableUnmanagedDebugging>false</EnableUnmanagedDebugging>
      </PropertyGroup>
      <PropertyGroup Condition=" '$(Configuration)' == 'Debug' ">
        <DebugSymbols>true</DebugSymbols>
        <OutputPath>bin\Debug\</OutputPath>
      </PropertyGroup>
      <PropertyGroup Condition=" '$(Configuration)' == 'Release' ">
        <DebugSymbols>false</DebugSymbols>
        <OutputPath>bin\Release\</OutputPath>
      </PropertyGroup>
      <ItemGroup>
        <Reference Include="mscorlib" />
        <Reference Include="System" />
        <Reference Include="System.Data" />
        <Reference Include="System.Xml" />
      </ItemGroup>
      <ItemGroup>
        <Compile Include="AssemblyInfo.cs">
          <SubType>Code</SubType>
        </Compile>
        <Compile Include="Program.cs">
          <SubType>Code</SubType>
        </Compile>
      </ItemGroup>
      <Import Project="$(MSBuildBinPath)\Microsoft.CSharp.targets" />
    </Project>
    
  6. Save the file.

  7. In the Properties window, set the Build Action of Program.cs, SimpleProject.ico, and SimpleProject.myproj to Content, and set their respective Include in VSIX properties to True.

This project template describes a basic Visual C# project that has both a Debug configuration and a Release configuration. The project includes two source files, AssemblyInfo.cs and Program.cs, and several assembly references. When a project is created from the template, the ProjectGuid value is automatically replaced by a new GUID.

In Solution Explorer, the expanded Templates folder should appear as follows:

Templates

    Projects

        SimpleProject

            AssemblyInfo.cs

            Program.cs

            SimpleProject.ico

            SimpleProject.myproj

Creating a Basic Project Factory

You must tell Visual Studio the location of your project template folder. To do this, add an attribute to the VSPackage class that implements the project factory so that the template location is written to the system registry when the VSPackage is built. Start by creating a basic project factory that is identified by a project factory GUID. Use the ProvideProjectFactoryAttribute attribute to connect the project factory to the SimpleProjectPackage class.

To create a basic project factory

  1. Open Guids.cs in the code editor.

  2. On the Tools menu, click Create GUID.

  3. Create a GUID for your project factory, or use the one in the following example. Add the GUID to the GuidList. The GUID must be in both Guid form and string form. The resulting code should resemble the following example.

    static class GuidList
    {
        public const string guidSimpleProjectPkgString = 
            "96bf4c26-d94e-43bf-a56a-f8500b52bfad";
        public const string guidSimpleProjectCmdSetString = 
            "72c23e1d-f389-410a-b5f1-c938303f1391";
        public const string guidSimpleProjectFactoryString = 
            "471EC4BB-E47E-4229-A789-D1F5F83B52D4";
    
        public static readonly Guid guidSimpleProjectCmdSet = 
            new Guid(guidSimpleProjectCmdSetString);
        public static readonly Guid guidSimpleProjectFactory = 
            new Guid(guidSimpleProjectFactoryString);
    };
    
  4. Save the file.

  5. Add a class to the top SimpleProject folder named SimpleProjectFactory.cs.

  6. Add the following using statements:

    using System.Runtime.InteropServices;
    using Microsoft.VisualStudio.Shell;
    
  7. Add a Guid attribute to the SimpleProjectFactory class. The value of the attribute is the new project factory GUID.

    [Guid(GuidList.guidSimpleProjectFactoryString)]
    class SimpleProjectFactory
    
  8. Rebuild the solution and verify that it builds without errors.

Now you can register your project template.

To register the project template

  1. Open SimpleProjectPackage.cs in the code editor.

  2. Add a ProvideProjectFactoryAttribute attribute to the SimpleProjectPackage class, as follows.

    [ProvideProjectFactory(    typeof(SimpleProjectFactory),     "Simple Project", 
        "Simple Project Files (*.myproj);*.myproj", "myproj", "myproj", 
        @"Templates\Projects\SimpleProject",     LanguageVsTemplate = "SimpleProject")]
    [Guid(GuidList.guidSimpleProjectPkgString)]
    public sealed class SimpleProjectPackage : Package
    
  3. Rebuild the solution and verify that it builds without errors.

    Rebuilding registers the project template.

The parameters defaultProjectExtension and possibleProjectExtensions are set to the project file name extension (.myproj). The projectTemplatesDirectory parameter is set to the relative path of the Templates folder. During the build, this path will be converted to a full build and added to the registry to register the project system.

Examining the Template Registration

During the build, Visual Studio creates a file called SimpleProject.pkgdef that includes the information needed to use the template. This is a hidden file in the \bin\debug folder of the project. Open the file to verify that the contents are similar to this:

[$RootKey$\InstalledProducts\SimpleProject2Package]
@="#110"
"Package"="{96bf4c26-d94e-43bf-a56a-f8500b52bfad}"
"PID"="1.0"
"ProductDetails"="#112"
"LogoID"="#400"
[$RootKey$\Packages\{96bf4c26-d94e-43bf-a56a-f8500b52bfad}]
@="SimpleProject2Package"
"InprocServer32"="$WinDir$\SYSTEM32\MSCOREE.DLL"
"Class"="MicrosoftIT.SimpleProject.SimpleProjectPackage"
"CodeBase"="$PackageFolder$\SimpleProject.dll"
[$RootKey$\Projects\{project GUID}]
@="SimpleProjectFactory"
"DisplayName"="Simple Project"
"DisplayProjectFileExtensions"="Simple Project Files (*.myproj);*.myproj"
"Package"="{package GUID}"
"DefaultProjectExtension"="myproj"
"PossibleProjectExtensions"="myproj"
"ProjectTemplatesDir"="$PackageFolder$\Templates\Projects\SimpleProject"
"Language(VsTemplate)"="SimpleProject"
[$RootKey$\NewProjectTemplates\TemplateDirs\{package GUID}\/1]
@="Simple Project"
"SortPriority"=dword:00000064
"TemplatesDir"="$PackageFolder$\Templates\Projects\SimpleProject"

The GUIDs in your file match the GUIDs in Guids.cs for your project.

Testing the Template Registration

Template registration tells Visual Studio the location of your project template folder so that Visual Studio can display the template name and icon in the New Project dialog box.

To test the template registration

  1. Press F5 to start debugging an experimental instance of Visual Studio.

  2. In the experimental instance, create a new project of your newly-created project type. In the New Project dialog box the SimpleProject icon appears under Installed templates just above the Other Project Types folder.

  3. Close the experimental instance of Visual Studio.

Now you have a project factory that is registered. However, it cannot yet create a project. The project package and project factory work together to create and initialize a project.

Add the Managed Package Framework code

Implement the connection between the project package and the project factory.

  • Download the source code for the Managed Package Framework for Projects. Extract the file to a location that is accessible to the SimpleProject solution.

  • Import the source-code files for the Managed Package Framework.

    1. Unload the SimpleProject project (in Solution Explorer, select the project node and on the context menu click Unload Project.) and open the project file in the XML editor.

    2. Add the following blocks to the project file (just above the <Import> blocks). Set ProjectBasePath to the location of the ProjectBase.files file in the Managed Package Framework code you just downloaded. You might have to add a backslash to the pathname. If you do not, the project might fail to find the Managed Package Framework code.

      <PropertyGroup>
           <ProjectBasePath>your path here\</ProjectBasePath>
           <RegisterWithCodebase>true</RegisterWithCodebase>
        </PropertyGroup>
        <Import Project="$(ProjectBasePath)\ProjectBase.Files" />
      
    3. You must also adjust the references in this project file.

    4. Remove the COMReference block for EnvDTE80:

          <COMReference Include="EnvDTE80">
            <Guid>{1A31287A-4D7D-413E-8E32-3B374931BD89}</Guid>
            <VersionMajor>8</VersionMajor>
            <VersionMinor>0</VersionMinor>
            <Lcid>0</Lcid>
            <WrapperTool>primary</WrapperTool>
            <Isolated>False</Isolated>
            <EmbedInteropTypes>False</EmbedInteropTypes>
          </COMReference>
      
    5. Add references to Microsoft.VisualStudio.Shell.Designer.dll, WindowsBase.dll, and Microsoft.Build.Tasks.v4.0.

          <Reference Include="Microsoft.VisualStudio.Designer.Interfaces, Version=1.0.5000.0, Culture=neutral, PublicKeyToken=b03f5f7f11d50a3a">
            <EmbedInteropTypes>True</EmbedInteropTypes>
          </Reference><Reference Include="WindowsBase" />
          <Reference Include="Microsoft.Build.Tasks.v4.0" />
      
    6. Save the project file and reload it. You should be able to build the solution with no errors.

To initialize the project factory

  1. In the SimpleProjectPackage.cs file, add the following using statement.

    using Microsoft.VisualStudio.Project;
    
  2. Derive the SimpleProjectPackage class from Microsoft.VisualStudio.Package.ProjectPackage.

    public sealed class SimpleProjectPackage : ProjectPackage
    
  3. Register the project factory. Add the following line to the SimpleProjectPackage.Initialize method, just after base.Initialize.

    base.Initialize();
    this.RegisterProjectFactory(new SimpleProjectFactory(this));
    
  4. Implement the abstract property ProductUserContext:

    public override string ProductUserContext
        {
            get { return ""; }
    }
    
  5. In SimpleProjectFactory.cs, add the following using statement after the existing using statements.

    using Microsoft.VisualStudio.Project;
    
  6. Derive the SimpleProjectFactory class from ProjectFactory.

    class SimpleProjectFactory : ProjectFactory
    
  7. Add the following dummy method to the SimpleProjectFactory class. You will implement this method in a later section.

    protected override ProjectNode CreateProject()
    {
        return null;
    }
    
  8. Add the following field and constructor to the SimpleProjectFactory class. This SimpleProjectPackage reference is cached in a private field so that it can be used in setting a service provider site.

    private SimpleProjectPackage package;
    
    public SimpleProjectFactory(SimpleProjectPackage package)
        : base(package)
    {
        this.package = package;
    }
    
  9. Rebuild the solution and verify that it builds without errors.

Testing the Project Factory Implementation

Test whether the constructor for your project factory implementation is called.

To test the project factory implementation

  1. In the SimpleProjectFactory.cs file, set a breakpoint on the following line in the SimpleProjectFactory constructor.

    this.package = package;
    
  2. Press F5 to start an experimental instance of Visual Studio.

  3. In the experimental instance, start to create a new project.

  4. In the New Project dialog box, select the SimpleProject project type and then click OK. Execution stops at the breakpoint.

  5. Clear the breakpoint and stop debugging. Since you have not yet created a project node, the project creation code still throws exceptions.

Extending the Project Node Class

Now you can implement the SimpleProjectNode class, which derives from the ProjectNode class. The ProjectNode base class handles the following tasks of project creation:

  • Copies the project template file, SimpleProject.myproj, to the new project folder. The copy is renamed according to the name that is entered in the New Project dialog box. The ProjectGuid property value is replaced by a new GUID.

  • Traverses the MSBuild elements of the project template file, SimpleProject.myproj, and looks for Compile elements. For each Compile target file, copies the file to the new project folder.

The derived SimpleProjectNode class handles these tasks:

  • Enables icons for project and file nodes in Solution Explorer to be created or selected.

  • Enables additional project template parameter substitutions to be specified.

Important

You must change part of the code in the Visual Studio MPF for Projects code.

In ProjectNode.cs, in the Load() method, replace the following code:

if ((flags & (uint)__VSCREATEPROJFLAGS.CPF_CLONEFILE) != (uint)__VSCREATEPROJFLAGS.CPF_CLONEFILE)
{
    this.SetProjectGuidFromProjectFile();
}

with the following code:

if ((flags & (uint)__VSCREATEPROJFLAGS.CPF_CLONEFILE) == (uint)__VSCREATEPROJFLAGS.CPF_CLONEFILE)
{
    // we need to generate a new guid for the project
    this.projectIdGuid = Guid.NewGuid();
}
else
{
    this.SetProjectGuidFromProjectFile();
}

To extend the project node class

  1. Add a class named SimpleProjectNode.cs.

  2. Replace the existing code with the following code.

    using System;
    using System.Collections.Generic;
    using Microsoft.VisualStudio.Project;
    
    namespace MicrosoftIT.SimpleProject
    {
        public class SimpleProjectNode : ProjectNode
        {
            private SimpleProjectPackage package;
    
            public SimpleProjectNode(SimpleProjectPackage package)
            {
                this.package = package;
            }
            public override Guid ProjectGuid
            {
                get { return GuidList.guidSimpleProjectFactory; }
            }
            public override string ProjectType
            {
                get { return "SimpleProjectType"; }
            }
    
            public override void AddFileFromTemplate(
                string source, string target)
            {
                this.FileTemplateProcessor.UntokenFile(source, target);
                this.FileTemplateProcessor.Reset();
            }
        }
    }
    

This SimpleProjectNode class implementation has these overridden methods:

  • ProjectGuid, which returns the project factory GUID.

  • ProjectType, which returns the localized name of the project type.

  • AddFileFromTemplate, which copies selected files from the template folder to the destination project. This method is further implemented in a later section.

The SimpleProjectNode constructor, like the SimpleProjectFactory constructor, caches a SimpleProjectPackage reference in a private field for later use.

To connect the SimpleProjectFactory class to the SimpleProjectNode class, you must instantiate a new SimpleProjectNode in the SimpleProjectFactory.CreateProject method and cache it in a private field for later use.

To connect the project factory class and the node class

  1. In the SimpleProjectFactory.cs file, add the following using statement:

    using IOleServiceProvider =    Microsoft.VisualStudio.OLE.Interop.IServiceProvider;
    
  2. Replace the SimpleProjectFactory.CreateProject method by using the following code.

    protected override ProjectNode CreateProject()
    {
        SimpleProjectNode project = new SimpleProjectNode(this.package);
    
        project.SetSite((IOleServiceProvider)        ((IServiceProvider)this.package).GetService(            typeof(IOleServiceProvider)));
        return project;
    }
    
  3. Rebuild the solution and verify that it builds without errors.

Testing the Project Node Class

Test your project factory to see whether it creates a project hierarchy.

To test the project node class

  1. Press F5 to start an experimental instance of Visual Studio.

  2. In the experimental instance, create a new SimpleProject.

  3. Visual Studio should call your project factory to create a project.

  4. Close the experimental instance of Visual Studio.

Adding a Custom Project Node Icon

The project node icon in the earlier section is a default icon. You can change it to a custom icon.

To add a custom project node icon

  1. In the Resources folder, add a bitmap file named SimpleProjectNode.bmp.

  2. In the Properties windows, reduce the bitmap to 16 by 16 pixels. Make the bitmap distinctive.

    Simple Project Comm

  3. In the Properties window, change the Build action of the bitmap to Embedded Resource.

  4. In SimpleProjectNode.cs, add the following using statements:

    using System.Drawing;
    using System.Windows.Forms;
    
  5. Add the following static field and constructor to the SimpleProjectNode class.

    private static ImageList imageList;
    
    static SimpleProjectNode()
    {
        imageList =        Utilities.GetImageList(            typeof(SimpleProjectNode).Assembly.GetManifestResourceStream(                "MicrosoftIT.SimpleProject.Resources.SimpleProjectNode.bmp"));
    }
    
  6. Add the following property to the beginning of the SimpleProjectNode class.

    internal static int imageIndex;
       public override int ImageIndex
       {
           get { return imageIndex; }
       }
    
  7. Replace the instance constructor with the following code.

    public SimpleProjectNode(SimpleProjectPackage package)
    {
        this.package = package;
    
        imageIndex = this.ImageHandler.ImageList.Images.Count;
    
        foreach (Image img in imageList.Images)
        {
            this.ImageHandler.AddImage(img);
        }
    }
    

During static construction, SimpleProjectNode retrieves the project node bitmap from the assembly manifest resources and caches it in a private field for later use. Notice the syntax of the GetManifestResourceStreamimage path. To see the names of the manifest resources embedded in an assembly, use the GetManifestResourceNames method. When this method is applied to the SimpleProject assembly, the results should be as follows:

  • MicrosoftIT.SimpleProject.Resources.resources

  • Microsoft.VisualStudio.Project.resources

  • MicrosoftIT.SimpleProject.VSPackage.resources

  • Resources.imagelis.bmp

  • Microsoft.VisualStudio.Project.DontShowAgainDialog.resources

  • Microsoft.VisualStudio.Project.SecurityWarningDialog.resources

  • MicrosoftIT.SimpleProject.Resources.SimpleProjectNode.bmp

During instance construction, the ProjectNode base class loads Resources.imagelis.bmp, in which are embedded commonly used 16 x 16 bitmaps from Resources\imagelis.bmp. This bitmap list is made available to SimpleProjectNode as ImageHandler.ImageList. SimpleProjectNode appends the project node bitmap to the list. The offset of the project node bitmap in the image list is cached for later use as the value of the public ImageIndex property. Visual Studio uses this property to determine which bitmap to display as the project node icon.

Testing the Custom Project Node Icon

Test your project factory to see whether it creates a project hierarchy that has your custom project node icon.

To test the custom project node icon

  1. Start debugging, and in the experimental instance create a new SimpleProject.

  2. In the newly-created project, notice that SimpleProjectNode.bmp is used as the project node icon.

    Simple Project New Project Node

  3. Open Program.cs in the code editor. You should see source code that resembles the following code.

    using System;
    using System.Collections.Generic;
    using System.Text;
    
    namespace $nameSpace$
    {
        public class $className$
        {
            static void Main(string[] args)
            {
                Console.WriteLine("Hello VSX!!!");
                Console.ReadKey();
            }
        }
    }
    

    Notice that the template parameters $nameSpace$ and $className$ do not have new values. You will learn how to implement template parameter substitution in the next section.

Substituting Template Parameters

In an earlier section, you registered the project template with Visual Studio by using the ProvideProjectFactory attribute. Registering the path of a template folder in this manner lets you enable basic template parameter substitution by overriding and expanding the ProjectNode.AddFileFromTemplate class. For more information, see New Project Generation: Under the Hood, Part Two.

To replace the values of template parameters $nameSpace$ and $className$ in the Program.cs file template, you must add code to the AddFileFromTemplate class.

To substitute template parameters

  1. In the SimpleProjectNode.cs file, add the following using statement.

    using System.IO;
    
  2. Replace the AddFileFromTemplate method by using the following code.

    public override void AddFileFromTemplate(
        string source, string target)
    {
        string nameSpace = 
            this.FileTemplateProcessor.GetFileNamespace(target, this);
        string className = Path.GetFileNameWithoutExtension(target);
    
        this.FileTemplateProcessor.AddReplace("$nameSpace$", nameSpace);
        this.FileTemplateProcessor.AddReplace("$className$", className);
    
        this.FileTemplateProcessor.UntokenFile(source, target);
        this.FileTemplateProcessor.Reset();
    }
    
  3. Set a breakpoint in the method, just after the className assignment statement.

The assignment statements determine reasonable values for a namespace and a new class name. The two ProjectNode.FileTemplateProcessor.AddReplace method calls replace the corresponding template parameter values by using these new values.

Testing the Template Parameter Substitution

Now you can test template parameter substitution.

To test the template parameter substitution

  1. Start debugging, and in the experimental instance create a new SimpleProject.

  2. Execution stops at the breakpoint in the AddFileFromTemplate method.

  3. Examine the values for the nameSpace and className parameters.

    • nameSpace is given the value of the <RootNamespace> element in the \Templates\Projects\SimpleProject\SimpleProject.myproj project template file. In this case, the value is "MyRootNamespace".

    • className is given the value of the class source file name, without the file name extension. In this case, the first file to be copied to the destination folder is AssemblyInfo.cs; therefore, the value of className is "AssemblyInfo".

  4. Remove the breakpoint and press F5 to continue execution.

    Visual Studio should finish creating a project.

  5. Open Program.cs in the code editor. You should see source code that resembles the following code.

    using System;
    using System.Collections.Generic;
    using System.Linq;
    using System.Text;
    
    namespace MyRootNamespace
    {
        public class Program
        {
            static void Main(string[] args)
            {
                Console.WriteLine("Hello VSX!!!");
                Console.ReadKey();
            }
        }
    }
    

    Notice that the namespace is now "MyRootNamespace" and the class name is now "Program".

  6. Start debugging the project. The new project should compile, run, and display "Hello VSX!!!" in the console window.

    Simple Project Command

Congratulations! You have implemented a basic managed project system.

See Also

Concepts

Inside the Visual Studio SDK