Mostrando entradas con la etiqueta Microsoft. Mostrar todas las entradas
Mostrando entradas con la etiqueta Microsoft. Mostrar todas las entradas

Changing UI Language in Visual Studio 2015

For some reason, I usually make the same mistake, over and over again: I install Visual Studio 2015 Community Edition using the web link provided by Microsoft. The problem with that is that the web automatically detects your system’s language, and downloads the corresponding version of VS. In my case, my PCs are usually in Spanish, so VS is downloaded and installed in Spanish. And I usually don’t realize until it’s too late…

I hate using certain apps in Spanish, and VS is one of those. I prefer using it in English, and as the installation takes ages, I decided to switch the UI language instead of uninstalling and installing all over again (which would be cleaner, I guess).

First problem is that VS only comes with one language: the one you chose when downloading. So, no English available…


So, I decided to search for a language pack, which is quite easy. The second problem is that the official MS link for that always seems to download the Spanish language pack. No matter what. Please note the installer says “Paquede de idioma 2015 – ESN” instead of “2015 Language Pack – ENU”:



Third problem is that if you try to install the Spanish language pack, it won’t detect that VS already includes that language, and will go through the whole installation process (and wasting hard drive space, I assume). It’s completely useless, as VS already has that language, and as a result VS Internationalization Options will remain the same.

So, if you want to download the proper lang pack, use this other link instead. It will provide you with the correct installer. After using it, now everything is working as expected, and it's installing the proper Language Pack – ENU.



After English UI is properly up and running, you can proceed to uninstall the previous Spanish language pack, if you want to.


Por qué el Nokia Lumia 9XX es el mejor móvil del mercado

Soy un usuario de telefonía bastante básico, lo reconozco. A estas alturas, le pido más bien pocas cosas a un móvil… Básicamente: hacer llamadas y SMS, Whatsapp, Line, Facebook, Twitter, Skype, poder navegar con fluidez, accesibilidad básica (Wifi, compartir conexión de internet, etc), una cámara de fotos decente, un buen navegador GPS, seguridad, tener mapas y guías offline, ser resistente, una experiencia de usuario rápida y sin retardos, un interfaz de usuario fácil e intuitivo, una buena integración con mi PC y una buena duración de batería. Bueno, visto así, quizá no sean tan pocas cosas… Sonrisa

Pues resulta que hoy me he dado cuenta de que en muchos de esos apartados, los Nokia Lumia 9XX son los mejores. Con mucha diferencia.

Ya se ha hablado largo y tendido de Windows Phone 8, de su interfaz, etc, por lo que no me centraré aquí en los aspectos propios del Sistema Operativo, sino en aquellos que hacen que los Lumia 9XX destaquen, incluso por encima de otros terminales WP8.

En mi caso, tengo un Lumia 920, así que vamos allá… Aspectos realmente increíbles de este teléfono:

Cámara de Fotos / Video

La cámara del Lumia es, simplemente, alucinante. Ya se ha hablado largo y tendido de ella, pero casi siempre la gente se limita a hablar de su capacidad para hacer fotos con poca luz (que la verdad, es increíble). Pero tiene otras muchas virtudes:

Modo macro

Es simplemente alucinante que una cámara de móvil pueda hacer una foto así, y encima sin tener que pegarte con ajustes de ningún tipo: solo tienes que dejarla en modo auto y acercarla mucho a algo. Donde cualquier otro móvil sacaría un borrón, el Lumia 920 saca esto (fotos tomada esta misma mañana):

183

172

Otros ejemplos de fotos:

Todas estas fotos han sido sacadas con mi propio Lumia 920, esta semana:

186176

170137

Video:

El estabilizador de imagen del Nokia Lumia 920 es alucinante. Realmente permite hacer grabaciones increíbles, incluso cuando vas caminando. Aquí tenéis un ejemplo (no grabado por mi), aunque por mi experiencia personal debo decir que el resultado todavía es más impresionante que lo que se aprecia en el:

Mapas / Navegación

Ahora, la versión WP8 de Here Maps y Here City Lens, de Nokia, permiten “tirar” de os mapas offline descargados para el navegador. Esto es algo que siempre he echado mucho de menos en todos los móviles que he tenido, ya que… ¿Cuando utilizas con más frecuencia los mapas del movil y las herramientas de guía? Cuando viajas. Y si estás en el extranjero, y no tienes roaming, no te sirven de nada.

Pues bien, Nokia ha solucionado este problema de forma brillante, y con los 32 GB de almacenamiento del Lumia 920 tenemos espacio más que de sobra para descargar mapas.

Navegador GPS:

Es, a falta de otra palabra mejor… brillante. Solo diré que, desde que adquirí mi primer Nokia Lumia, nunca más he tocado mi navegador TomTom:

  • Las indicaciones por voz son las mejores que he visto nunca en un navegador, casi no hace falta ni mirar a la pantalla (simplemente haz lo que te va diciendo). El volumen es más que de sobra para escuchar las indicaciones, incluso cuando llevas música en el coche, o las ventanillas abiertas (de hecho, siempre llevo el volumen a menos de la mitad, ya que si no resulta excesivo).
  • Dado que utiliza el sensor GPS en combinación con la triangulación de los repetidores de telefonía para localizarte, no le cuesta ni 3 segundos encontrarte en el mapa. La precisión es siempre muy buena, y gracias a los repetidores de telefonía, no se queda completamente sin señal en los túneles. La precisión baja mucho, pero al menos tu coche sigue moviéndose en el mapa, algo importante en ciudades con mucha circulación subterránea.
  • Los mapas (disponibles para todo el mundo), son gratis… ¿Algo más que decir?
  • En cuanto a la fiabilidad, solo puedo decir que he utilizado intensamente el sistema de Nokia en España, Francia, Inglaterra y Estados Unidos, sin ningún tipo de problema.

Skype

Utilizo bastante Skype, y la implementación para WP8, en combinación con la calidad de la cámara del Lumia 920 es alucinante. Además, tengo la suerte de contar con una red 4G, así que va como un auténtico tiro. La calidad de imagen es notablemente mejor que la de la cámara webcam de mi portátil. Flipante !

Resistencia

Todos hemos visto multitud de vídeos haciendo todo tipo de perrerías con las pantallas Gorilla Glass de los Lumia. Tengo Lumias desde hace un par de años, y la verdad es que todas las pantallas están como el primer día. Ni la más mínima raya, sin haber tenido ningún tipo de cuidado con ellas, ni llevar protector. Mis móviles han convivido en mis bolsillos con las llaves de casa, prácticamente siempre, y ni una muesca. Solo hay que ver este video…:

Cosas a mejorar

Sinceramente, la duración de la batería sigue siendo muy justita cuando le das un uso intenso (al igual que en todos los móviles de alta gama). En días muy intensivos, deberás pelear para llegar al final del día sin ver el simbolito de “batería a punto de fallecer”. El día que consigan mejorar ese aspecto, realmente habrá mucha gente que no necesitará ni tablets, ni portátiles…

Otro aspecto en el que todavía está por detrás es el cliente de Whatsapp. Evidentemente, esto es culpa de la propia whatsapp, y no de Nokia ni de Microsoft, pero es una pena. El cliente sigue siendo realmente cutre. Vamos Whatsapp !!!!

Al final, quizá tenga que lanzar Microsoft su propio cliente, como ha hecho con el lector de PDF, para remediar el desastroso trabajo que hizo Adobe con su cliente PDF para Windows Phone… Era realmente lamentable, se colgaba, y no era capaz de abrir prácticamente ningún PDF de tamaño medio. El lector de PDF de Microsoft funciona francamente bien.

Resumen

Nokia Lumia 920: Su cámara es la mejor del mercado (con mucha diferencia). Para el usuario medio, permite sustituir a una cámara de fotos compacta en el 90% de los casos. Como cámara de video, es realmente brillante también (incluso mejor que muchas cámaras de video específicas, que no incluyen ni grabación 1080p ni estabilización de imagen).

Como navegador GPS, no tiene rival. Sus mapas son muy muy buenos también, su funcionalidad Skype es increíble y el resto de funcionalidades del móvil, están cuando menos a la altura de los mejores.

¿Se puede pedir algo más?

Bueno, sí… Que ciertos redactores de páginas como Gizmodo.es dejen de lado su aparente aversión a todo lo que huela a Microsoft, y valoren los productos objetivamente. Quizá algún día salga a la luz que, en realidad, están a nómina de otras empresas, porque si no no se entiende…

Saludos !!!

Projecting a 3D Vector to 2D screen space, with automatic viewport clipping (DirectX, SlimDX or XNA)

Many times, you will need to know the 2D screen coordinates of a 3D world position. DirectX already includes methods to perform vector projections, taking into account the needed World, View and Projection matrices, as well as the viewport scaling. It does not include however viewport clipping, as an additional feature in those methods.

Viewport clipping can be a tricky matter, and sometimes, you will need to rely on algorithms like the Sutherland-Hodgman algorithm, or the refined version specifically developed for 2D viewports: the Cohen-Sutherland algorithm. Those methods are especially appropriate when you are already dealing with 2D coordinates, or if you need to know the extra points or polygons generated when clipping is performed.

In our case however, we will only focus on finding the closest in-screen coordinates that correspond to an off-screen point, without dealing with any extra geometry or polygon sub-division. It’s important to note also that we will be working with 3D coordinates that go through a projection process (and finally getting 2D coords). This is relevant, as provides us with additional information we can use, and allows us to jump inside the algorithm and perform the clipping in the middle of the projection pipeline, instead of doing so at the end, when the coordinates are already 2D.

Resources like this, and this explain very well the processing of vertices in the Direct3D pipeline:

untitled

As you can see, each 3D position travels through different stages and spaces of coordinates: model space –> world space -> camera space –> projection space –> clipping space –> homogeneous space –> and finally: Screen Space.

Evidently, D3D also performs certain types of clipping to vectors, and you can tell by the above picture that clipping is done, (surprisingly), in clip space. We will try to mimic that behavior…

Note: Transforming coordinates with the MClip matrix, to go from projection space to clip space should be done only if you want to scale or shift your clipping volume. If you are ok with a clipping volume that matches your screen render target viewport (you will, most of the cases), you should leave this matrix as the Identity, or simply don´t perform this step. The below written algorithm has all this step commented.

Once our coordinates are in Clip Space (Xp, Yp, Zp, Wp), we easily perform the clipping by limiting their values to the range: –Wp .. Wp for the X and Y, and to the range: 0 .. Wp for Z.

After that, we just need to proceed with the normal Vector projection algorithm, as the resulting 2D coordinates will be stuck inside the screen viewport. An extra feature that should be nice to have, is a simple output variable that tells us if the coordinates were inside or outside the viewport.

A C# implementation of such an algorithm could be:

public static Vector2 ProjectAndClipToViewport(Vector3 pVector, float pX, float pY,
                                float pWidth, float pHeight, float pMinZ, float pMaxZ,
                                Matrix pWorldViewProjection, out bool pWasInsideScreen)
        {
            // First, multiply by worldViewProj, to get the coordinates in projection space
            Vector4 vProjected = Vector4.Zero;
            Vector4.Transform(ref pVector, ref pWorldViewProjection, out vProjected);

            // Secondly (OPTIONAL STEP), multiply by the clipMatrix, if you want to scale
            // or shift the clip volume. If not (most of the times you won´t), just leave 
            // this part commented,

            // or set an Identity Matrix as the clip matrix. The default clip volume parameters
            // (see below), will produce an identity clip matrix.

            //float clipWidth = 2;
            //float clipHeight = 2;
            //float clipX = -1;
            //float clipY = 1;
            //float clipMinZ = 0;
            //float clipMaxZ = 1;
            //Matrix mclip = new Matrix();
            //mclip.M11 = 2f / clipWidth;
            //mclip.M12 = 0f;
            //mclip.M13 = 0f;
            //mclip.M14 = 0f;
            //mclip.M21 = 0f;
            //mclip.M22 = 2f / clipHeight;
            //mclip.M23 = 0f;
            //mclip.M24 = 0f;
            //mclip.M31 = 0f;
            //mclip.M32 = 0;
            //mclip.M33 = 1f / (clipMaxZ - clipMinZ);
            //mclip.M34 = 0f;
            //mclip.M41 = -1 -2 * (clipX / clipWidth);
            //mclip.M42 = 1 - 2 * (clipY / clipHeight);
            //mclip.M43 = -clipMinZ / (clipMaxZ - clipMinZ);
            //mclip.M44 = 1f;
            //vProjected = Vector4.Transform(vProjected, mclip);
            
            // Third: Once we have coordinates in clip space, perform the clipping,
            // to leave the coordinates inside the screen. The clip volume is defined by:

            //
            //  -Wp < Xp <= Wp
            //  -Wp < Yp <= Wp
            //  0 < Zp <= Wp
            //
            // If any clipping is needed, then the point was out of the screen.
            pWasInsideScreen = true;
            if (vProjected.X < -vProjected.W)
            {
                vProjected.X = -vProjected.W;
                pWasInsideScreen = false;
            }
            if (vProjected.X > vProjected.W)
            {
                vProjected.X = vProjected.W;
                pWasInsideScreen = false;
            }
            if (vProjected.Y < -vProjected.W)
            {
                vProjected.Y = -vProjected.W;
                pWasInsideScreen = false;
            }
            if (vProjected.Y > vProjected.W)
            {
                vProjected.Y = vProjected.W;
                pWasInsideScreen = false;
            }
            if (vProjected.Z < 0)
            {
                vProjected.Z = 0;
                pWasInsideScreen = false;
            }
            if (vProjected.Z > vProjected.W)
            {
                vProjected.Z = vProjected.W;
                pWasInsideScreen = false;
            }

            // Fourth step: Divide by w, to move from homogeneous coordinates to 3D
            // coordinates again

            vProjected.X = vProjected.X / vProjected.W;
            vProjected.Y = vProjected.Y / vProjected.W;
            vProjected.Z = vProjected.Z / vProjected.W;

            // Last step: Perform the viewport scaling, to get the appropiate coordinates
            // inside the viewport

            vProjected.X = ((float)(((vProjected.X + 1.0) * 0.5) * pWidth)) + pX;
            vProjected.Y = ((float)(((1.0 - vProjected.Y) * 0.5) * pHeight)) + pY;
            vProjected.Z = (vProjected.Z * (pMaxZ - pMinZ)) + pMinZ;

            // Return pixel coordinates as 2D (change this to 3D if you need Z)
            return new Vector2(vProjected.X, vProjected.Y);
        }

Hope it helps !

Sonrisa

Using T4 Templates to generate custom strongly-typed code in Visual Studio


Strongly typed code rocks. Easy as that. Reduces bugs, and makes your developments more productive and efficient. We all know that.
One example of strong-typing inside Visual Studio: resource files are parsed by default with the ResXFileCodeGenerator tool, which generates automatic properties in C# files, that give us strongly-typed access to strings.
That’s cool, by I there’s a lot of customization capabilities there missing. For instance, ResXFileCodeGenerator generates internal classes by default, and this is not always desirable. Many people struggled around this in the past, so in Visual Studio 2008 a new custom tool was introduced: PublicResXFileCodeGenerator: the same one than before, but building public classes. Cool again, but still missing many things…
So, how to customize the code generation process?

Option 1: Write your own tool

You can write a tool that mimics the behavior of ResXFileCodeGenerator, and you can install it within the Visual Studio (so you can select your ResX files to be parsed with it). It´s not too complicated, but you need to develop a separate installation project, to be able to install it within VStudio. You can find an example here.
To be honest, I don´t like the idea of having to write the extension in a different project, needing to go there for every change, recompiling, re-installing, etc. Besides that, this approach means having one single tool for every resX files you want to parse, and therefor, the tool needs to be generic enough to give support for every use case you have.
One last inconvenient, is that as far as I know, a tool like this cannot act in several files at a time. That means that it will generate a code file for each resource file. It’s impossible to generate ONE code file for SEVERAL resource files.
Seems that I´m too lazy today for all of that, so I searched for other solutions, and found one that I really like: T4 templates

Option 2: Write a T4 Text Template

A T4 Text Template is “a mixture of text blocks and control logic that generate a text file”. In other words, it’s a piece of code that will generate a text file and will include it in your Solution (below the .tt file itself). This text file, pretty well can be a source code file, so this way we can automatically generate code for the solution, with all the power to customize it.
I have been studying them for a while, and I can tell you that they are really powerful. Some relevant aspects around them:
  1. They are text files (with .tt extension), that are included INSIDE your solution, so no need to keep them in a separate project, and no need to build a setup project to install them.
  2. This .tt files are, by default, parsed by the custom tool: TextTemplatingFileGenerator
  3. They can operate on several project files at a time, not only one, generating if you want ONE code file, for SEVERAL resource files.
  4. They don´t need to be installed or distributed in any form. Simply add them to your solution
  5. Changes in the Template don’t mean to go to a different solution, rebuilding and re-installing
  6. They can be written in both C# or VisualBasic.
  7. When they are parsed, the generate a code file below the Template (see below), with the same name as the template itself:
image
  1. They are usually parsed as soon as they are modified and re-saved.
  2. Because the modification and installation process is so simple, and because you can have if you want a different T4 Template for each resX file, you can have as many versions of the templates as you wish. Each one covering different needs. And that is cool !
Any disadvantages? Visual Studio integration
By now, Visual Studio offers no integration for T4 files. That means that by default you get no syntax highlighting, no intellisense, etc.
But this can be fixed by using one of the T4 integration extensions for VStudio out there. I have tested three of them:
  • Tangible T4 Editor: Honestly, I couldn’t get it to work. I installed it, apparently with no error, but it didn’t work. And I already started this post by saying I´m too lazy today, so I tested other solutions that installed fine at first try:
  • Clarius Visual T4: It installed just fine and added syntax highlighting and intellisense to T4 files. Unfortunately, it made my Visual Studio 2010 Ultimate freeze for about 10 seconds from time to time. So I decided to try a different option.
  • Deviart T4: It installed fine, and works pretty well. The syntax highlighting gets messed from time to time, but nothing serious. Just re-opening the file fixes it. It’s fast, and I like it. It’s the clear winner. And it’s free!
image

Some basic concepts about developing T4 templates

Developing a T4 template is pretty straightforward, if you have some experience with .Net. We are not going to explain here all the coding aspects about T4 templates, as it is extremely clearly explained here and here.
However, it’s a bit meesy the first time you see one, how code blocks are mixed with plain text blocks, especially if you don´t have an extension installed that gives you syntax highlighting.
So, first thing you should understand is that T4 templates mix parts of text that will simply be copied to the generated file (Text Blocks), and others that are code blocks to control the logic of the generation (Code Blocks). In Deviart T4, you will see the following highlighting:
  1. Text blocks, copied directly to the destination file (grayed out):
image
As I mentioned, whatever you write here will be directly copied to the destination file. No matter what it is. It won´t be validated by the tool, just copied. You are responsible of writing something that makes sense, and that won’t generate compiling errors.
  1. Code blocks (surrounded by <# … #> and similar):
image
These code blocks are parsed by the tool and executed. They are validated by the compiler, just like any other piece of code you write (that means that will generate compiling errors as usually). In the previous example, the code block is writing a “}” symbol to the output file, using the WriteLine method (se next chapter for more info).

Different ways to output text to the destination file

We already seen some of them, but basically, you have three different ways of outputting text:
1.- Put a Text Block in your template (like in the previous chapter).
2.- Invoke the WriteLine method inside a Code Block. Like in the example of previous chapter, anywhere you call WriteLine(“…”) from within a code block, will write that text line to the destination file.
3.- Mixing both Code Blocks and Text Blocks, like in the following example:
image
In this example, the header Text Block (grayed out) will only be copied if insertWarningHeader == true. This means that flow control of code blocks affect the output of plain text blocks too.
Please note that you need to “end” the Code Block by using the “#>”, and therefor the text inside the braces will be identified as a Text Block. Then, re-open a code block, just to put the final brace “}” of the IF statement. Separating it into two different Code Blocks doesn’t prevent the IF from doing its job…

Other useful kinds of Code Blocks

As you can see, the <# … #> labels define the start and end of code blocks that should be parsed and evaluated. Anything outside those labels is considered text blocks. There are other kinds of code blocks, as explained here:
  • Expression code blocks (<#= … #>): They evaluate an expression, and convert the result to string. Some examples:
    1. <#= 2 + 3 #> … will output a “5”
    2. <#= numberOfEntries * 2#> … Where numberOfEntries is a valid variable on that scope, will output the result of the addition.
    3. etc.
  • Class feature code blocks (<#+ … #>): Allow to define properties or helper methods. They can be defined in separate files. The following example defines the property RootNamespace and the helper method EmitEnum, available in all the template.
image
  • Importing namespaces is also very easy, you just need to put in the top of the file statements like the following:
<#@ import namespace="System.Xml" #>
I think that there’s not too much magic in here, so I won’t bore you with more detail. Everything is really simple to follow, and is really well explained in the above links, so I guess the best way to show a real T4 Template is with an example!

Example: Custom strong-typed access to resources with a T4 template

What we need

In this example, we will used the mentioned T4 templates to give a full-featured, strong-typed access to strings in resource files. I did it to meet my own needs, but using it as a starting point, it will very easy for you to adapt it to your own.
The goal is to be able to customize the following aspects directly from the resX file:
  • Access modifier of the class: public, private, internal
  • Namespace where the class is defined
  • Generate (if wanted), an enumeration with all the keys of the entries
  • Modify the return type of the properties. Does this make any sense? Yes (read below).
  • Allow ResX files to use Conditional Compilation:
    1. It would be fantastic if we could specify different values for strings, depending on conditional compilation symbols
    2. And it would be even greater, if we could specify different return types, depending on the same conditional compilation symbols.

Does it make any sense to modify return types?
In my scenario, it does. I’ll explain it, so you can see one example. Then it’s up to you to decide if that’s useful also in other situations…
I was writing a piece of code, related to 3D graphics, that I wanted to run in both Windows Phone and Android. That code has contents (bitmaps, etc), which are identified differently in Windows Phone (XNA) projects, and Android.
In the first one, contents are identified with Asset Names, which are strings. In the second one, contents are identified with Integer IDs. In fact, Android automatically generates a class like the ones we are creating here to give strong-type access to those integers.
Well, I wanted to centralize the loading of contents, so it was obvious that I would need to unify content identification with my own IDs. I simply didn’t want to have #if #endif blocks all around my code.
Question is, that I can write two versions of methods like LoadTexture(), one for each platform, and keeping the specifics inside the Content Repository, but the problem is that Android identifies contents with a different type (ints instead of strings), and that makes my code end up with a different interface for each version. Something like this:
#if(ANDROID)
        public static void LoadTexture(int pResourceID)
        {
        }
#elif(WINDOWS_PHONE)
        public static void LoadTexture(string pAssetName)
        {
        }
#endif
I have no problem with writing two versions of the method (that’s inevitable). But having two different interfaces is bad. Really bad.
Why? Because then, every single point in my code where I use this method will need a #if #endif code block too. And I hate that. I want this contents repository to expose a single interface. How do we achieve that?
If both platforms used strings to identify contents, I could create a table to map my own resource identifiers to that ones. But Android uses ints. And what is worse, they are automatically generated. I can see what IDs Android gave to a content, but I cannot guarantee that the ID will be consistent over time, as it’s generated by an automatic tool. In addition to that, I would need to maintain that table by hand, what is horrible and very bug prone.
Mmmmmhhh…
Seems that the only solution is writing code, with methods or properties that map my own resource IDs to: string assets in the case of XNA, and resource IDs in the case of Android. Something like:
#if(ANDROID)
        public static int Button1
        {
            get
            {
                return Resource.Drawable.Button1;
            }
        }
#elif(WINDOWS_PHONE)
        public static string Button1
        {
            get
            {
                return @"Contents\Textures\UI\Button1";
            }
        }
#endif
Having a repository like this, would allow me to eliminate the #if #endif blocks when calling methods like LoadTextures, as I could use: LoadTextures ( Respository.Button1 );
If we are compiling to ANDROID, Button1 will return an int and LoadTextures() will expect an int, so no problem. If we are compiling to Windows Phone, both will give and expect a string. Everything fine again.
The problem with that is that a single project can have hundreds, or thousands of resources, an maintaining the file manually can be a nightmare. If only it could be done automatically…
That’s where the variable return type of my template kicks in. It will give us precisely that, with the particularity that when on ANDROID (being the return type an int), the template will not insert string, but a call to the Android Repository.
This way, I get rid of having to deal manually with Android int IDs, and just work with their strong-typed names.
See below for more…

The implementation

The behavior of the template we have developed, to achieve all of this is:
  • It is designed to be placed inside your projects, just by the file it will process. It has to be in the same folder and needs to have the same name. So, if you want to process the file Textures.resx, you will end up with something like this in your solution:
image
Note 1: You can easily modify it to parse all the ResX files it finds in the project at once, but this time I needed it to work this way.
Important Note 2: To avoid duplicity of generated code, and compilation errors, when you add the template to a resource file, you should disable the default parsing of that ResX file, by removing the default custom tool (ResXFileCodeGenerator) and by setting BuildAction = None.
  • It will generate strong-typed properties to access all the strings it finds in the resX file
  • It can be instructed to generate an enumerate with all the keys in the file too
  • It will automatically generate the well formatted XML comments for the properties
  • It supports some special keywords (entries starting by “#C#_”), to allow customizing the generation process:
    1. CT4_ACCESS_MODIFIERS (public, private, internal): By default, the generated class will be public, but you can include this entry to modify this behavior. You can set the following values: public, private or internal.
image
    1. CT4_OVERRIDE_NAMESPACE (namespace name): By default, the class will be in the default namespace of the project, but you can include this entry to override that behavior, setting the desired namespace in the value of the entry:
image
  1. CT4_GENERATE_ENUM (enum name): If this entry is included, the template will create an Enumeration with all the key names of the ResX file, and also an special version of the GetResourceString() method, accepting as parameter one of those enumerations. You can specify the name of the enumeration in the Value field.
image
  1. CT4_DEFAULT_RETURNTYPE (string, int, etc): Allows to specify the default return type for all properties. The default return type if string.
image
  1. CT4_CONDITIONAL_COMPILATION_SYMBOLXX (Symbol Name): Allows to use conditional compilation inside the resource files. To do so, you must first identify what conditional compilation symbols are used in your project. In this example, we will have two of them: WINDOWS_PHONE, and ANDROID. So, we will create two entries to let the generator know about them, like the following:
image
  1. CT4_CONDITIONAL_RETURNTYPE: If conditional compilation is being used, it allows to specify a different return type for each conditional symbol, with following syntax:
@COND_SYMBOL1:type_1;@COND_SYMBOL2:type_2 …
Where COND_SYMBOLXX is one of the conditional compilation symbols defined before, and type_XX is the return type desired for that symbol.
The following example a string return type for WINDOWS_PHONE, and an integer return type for ANDROID:
image

Once we have configured the generation process with the control entries, it’s time to put some data there. A normal string entry is entered as usual, with unique name, a value, and a comment if you want to. How to include conditional compilation entries?
Using conditional compilation in string entries
The name and the comment of the entry are the same as in normal ones. It’s in the Value where we put the information needed, very much like when defining specific return types for each conditional compilation. The syntax is:
@COND_SYMBOL1:value_1;@COND_SYMBOL2:value_2 …
Where COND_SYMBOLXX is one of the conditional compilation symbols defined before, and value_XX is the string value desired for that symbol.
So, the following example:
image
Will generate the following code:
   66         ///<summary>
   67         ///Button 1 image asset name or ID
   68         ///</summary>
   69         #if(WINDOWS_PHONE)
   70              public static string Button1 { get { return "Content\Textures\UI\button1"; } }
   71         #elif(ANDROID)
   72              public static int Button1 { get { return Resource.Drawable.app_Icon; } }
   73         #endif
Note that the generator also takes into account the Comment field, and that the return types and values for each version of the property are different. Also, in the case of Android, note that the get method makes a Call to the Android resource repository class, with the strongly-typed properties that access the IDs.

The template code

The template is based on this other one, but with a modified behavior to meet my own needs. The code is:
<#
//  ----------------------------------------------------------------------------------------------
//  Template: Generates C# code to give strongly-typed access to resource files
//  Author: Inaki Ayucar
//  Website: www.graphicdna.net
//  Based on the work of: http://blog.baltrinic.com
//  Links:
//          MSDN about developing T4 files: http://msdn.microsoft.com/en-us/library/bb126445.aspx
//                                          http://msdn.microsoft.com/en-us/library/dd820620.aspx
//  ----------------------------------------------------------------------------------------------
#>
<#@ template debug="true" hostspecific="true" #>
<#@ assembly name="System.Core" #>
<#@ assembly name="System.Xml" #>
<#@ assembly name="Microsoft.VisualStudio.Shell.Interop.8.0" #>
<#@ assembly name="EnvDTE" #>
<#@ assembly name="EnvDTE80" #>
<#@ assembly name="VSLangProj" #>
<#@ import namespace="System.Collections.Generic" #>
<#@ import namespace="System.IO" #>
<#@ import namespace="System.Linq" #>
<#@ import namespace="System.Text" #>
<#@ import namespace="System.Text.RegularExpressions" #>
<#@ import namespace="System.Xml" #>
<#@ import namespace="Microsoft.VisualStudio.Shell.Interop" #>
<#@ import namespace="EnvDTE" #>
<#@ import namespace="EnvDTE80" #>
<#@ import namespace="Microsoft.VisualStudio.TextTemplating" #>
<#  // --------------------------------------------------------------------------------------------
    // Get global variables
    // --------------------------------------------------------------------------------------------
    var serviceProvider = Host as IServiceProvider;
    if (serviceProvider != null)
        Dte = serviceProvider.GetService(typeof(SDTE)) as DTE;
 
 
    // Fail if we couldn't get the DTE. This can happen when trying to run in TextTransform.exe
    if (Dte == null)
        throw new Exception("T4MVC can only execute through the Visual Studio host");
 
    Project = GetProjectContainingT4File(Dte);
 
    if (Project == null)
    {
        Error("Could not find the VS Project containing the T4 file.");
        return"XX";
    }
 
     AppRoot = Path.GetDirectoryName(Project.FullName) + '\\';
     RootNamespace = Project.Properties.Item("RootNamespace").Value.ToString();
    // --------------------------------------------------------------------------------------------
#>
// ---------------------------------------------------------------------------------------------------
// <auto-generated>
//     This code was generated by a tool.
//
//     Changes to this file may cause incorrect behavior and will be lost if
//     the code is regenerated.
// </auto-generated>
// ---------------------------------------------------------------------------------------------------
using System.Threading;
 
 
<#
try
{
        // We are storing in a List<ResourceEntry> (declared below) a list with all string entries
        // of all files found matching our search criteria
        AllEntries = new List<ResourceEntry>();
 
        // Entries starting with "CT4_", are declared as "control" entries, defining keywords or data
        // that will modify the source code generation behavior
        ControlEntries = new List<ResourceEntry>();
 
        // Find files on our project that match our search criteria (recursively), and store every
        // string entry on those files
        FindResourceFilesRecursivlyAndRecordEntries(Project.ProjectItems, "");
        AllEntries.Sort( new Comparison<ResourceEntry>( (e1, e2) => (e1.Path + e1.File +
                                 e1.ValidIdentifierName).CompareTo(e2.Path + e2.File + e2.ValidIdentifierName)));
 
        // Parse control entries
        string overrideNameSpace = "";
        string classAccessModifier = "public";
        string generateEnumName = "";
        string defaultReturnType = "string";
        Dictionary<string, string> returnTypesForConditionalCompilation = new Dictionary<string, string>();
        List<string> conditionalCompilationSymbols = new List<string>();
        List<string> conditionalCompilationSymbolsInValues = new List<string>();
        foreach(ResourceEntry entry in ControlEntries)
        {
            if(entry.OriginalName == "CT4_OVERRIDE_NAMESPACE")
            {
                overrideNameSpace = entry.Value;
                continue;
            }
            if(entry.OriginalName == "CT4_ACCESS_MODIFIERS")
            {
                classAccessModifier = entry.Value.ToLower();
                if(classAccessModifier != "public" &&
                   classAccessModifier != "private" &&
                   classAccessModifier != "internal")
                    Error("Invalid CT4_ACCESS_MODIFIERS found: Only public, private or internal are allowed");
                continue;
 
            }
            if(entry.OriginalName == "CT4_GENERATE_ENUM")
            {
                generateEnumName = entry.Value;
                continue;
            }
            if(entry.OriginalName.StartsWith("CT4_CONDITIONAL_COMPILATION_SYMBOL"))
            {
                conditionalCompilationSymbols.Add(entry.Value);
                conditionalCompilationSymbolsInValues.Add(string.Format("@{0}:", entry.Value));
                continue;
            }      
            if(entry.OriginalName.StartsWith("CT4_DEFAULT_RETURNTYPE"))
            {
                defaultReturnType = entry.Value;
                continue;
            }
            if(entry.OriginalName.StartsWith("CT4_CONDITIONAL_RETURNTYPE"))
            {
                returnTypesForConditionalCompilation.Clear();
                bool hasCondCompilation = StringValueHasCompilationSymbols(entry.Value,
                                                               conditionalCompilationSymbolsInValues);
                if(!hasCondCompilation)
                    Error("CT4_CONDITIONAL_RETURNTYPE entry found, but no conditional symbols were found in value");
 
                Dictionary<string, string> parts = SplitStringForConditionalCompilationSymbols(entry.Value,
                                                                 conditionalCompilationSymbolsInValues);
                foreach(string symbol in parts.Keys)
                    returnTypesForConditionalCompilation.Add(symbol, parts[symbol]);
                continue;
            }      
        }
 
        // Foreach string entry found, add it's code
        string currentNamespace = "";
        string currentClass = "";
        bool thisIsFirstEntryInClass = true;
        List<string> names = new List<string>();       
        for(int i=0;i<AllEntries.Count;i++)
        {
            ResourceEntry entry = AllEntries[i];
 
            var newNamespace = overrideNameSpace == "" ? RootNamespace: overrideNameSpace;
            var newClass = entry.File;
            bool namesapceIsChanging = newNamespace != currentNamespace;
            bool classIsChanging = namesapceIsChanging || newClass != currentClass;
 
            // Close out current class if class is changing and there is a current class
            if(classIsChanging && currentClass != "")
            {
                EmitNamesInnerClass(names);
                WriteLine("\t}");
            }
 
            // Check if there is a namespace change
            if(namesapceIsChanging)
            {
                // Close out current namespace if one exists
                if( currentNamespace != "" )
                    WriteLine("}");
 
                currentNamespace = newNamespace;
 
                // Open new namespace
                WriteLine(string.Format("namespace {0}", currentNamespace));
                WriteLine("{");
 
            }
 
            // Check if there is a class Change
            if(classIsChanging)
            {
                currentClass = newClass;
                WriteLine(string.Format("\t" + classAccessModifier + " class {0}", currentClass));
                WriteLine("\t{");
                thisIsFirstEntryInClass = true;
 
                // Only if the class changed, Emit code for the ResourceManager property and
                // GetResourceString method for the current class
                #>
                private static global::System.Resources.ResourceManager resourceMan;
 
                /// <summary>
                ///   Returns the cached ResourceManager instance used by this class.
                /// </summary>
                [global::System.ComponentModel.EditorBrowsableAttribute
                                               (global::System.ComponentModel.EditorBrowsableState.Advanced)]
                private static global::System.Resources.ResourceManager ResourceManager
                {
                    get
                    {
                        if (object.ReferenceEquals(resourceMan, null))
                        {
                            global::System.Resources.ResourceManager temp = new
                                              global::System.Resources.ResourceManager("
                <#=string.Format("{0}.{1}{2}", RootNamespace, entry.Path + "." + entry.File, entry.Type) #>",
                                                        typeof(<#=entry.File#>).Assembly);
                            resourceMan = temp;
                        }
                        return resourceMan;
                    }
                }
 
                /// <summary>
                ///   Returns the formatted resource string.
                /// </summary>
                [global::System.ComponentModel.EditorBrowsableAttribute
                                                (global::System.ComponentModel.EditorBrowsableState.Advanced)]
                private static string GetResourceString(string key, params string[] tokens)
                {
                    var culture = Thread.CurrentThread.CurrentCulture;
                    var str = ResourceManager.GetString(key, culture);
 
                    for(int i = 0; i < tokens.Length; i += 2)
                        str = str.Replace(tokens[i], tokens[i+1]);
 
                    return str;
                }
 
                <#
                if(generateEnumName != "")
                {
                #>/// <summary>
                /// Returns the formatted resource string, passing the enum value as parameter
                /// </summary>
                [global::System.ComponentModel.EditorBrowsableAttribute
                                           (global::System.ComponentModel.EditorBrowsableState.Advanced)]
                private static string GetResourceString(<#= generateEnumName.ToString() #> key, params string[] tokens)
                {
                    var culture = Thread.CurrentThread.CurrentCulture;
                    var str = ResourceManager.GetString(key.ToString(), culture);
 
                    for(int i = 0; i < tokens.Length; i += 2)
                        str = str.Replace(tokens[i], tokens[i+1]);
 
                    return str;
                }
 
                <#
                }
            }         
 
 
            // Write entry comment for property
            EmitEntryComment(entry, thisIsFirstEntryInClass);
 
            // Select all tokens between braces that constitute valid identifiers
            var tokens = Regex.Matches(entry.Value, @"{(([A-Za-z]{1}\w*?)|([A-Za-z_]{1}\w+?))?}").
                                                                       Cast<Match>().Select(m => m.Value);       
            if(tokens.Any())
            {
                var inParams = tokens.Aggregate("", (list, value) => list += ", string " + value)
                    .Replace("{", "").Replace("}", "");
                if(inParams.Length > 0 ) inParams = inParams.Substring(1);
                var outParams = tokens.Aggregate("", (list, value) => list += ", \"" + value +"\", " +
                                                                value.Replace("{", "").Replace("}", "") );
 
                WriteLine(string.Format("\t\tpublic static string {0}({1}) {{ return
                          GetResourceString(\"{0}\"{2}); }}",  entry.ValidIdentifierName, inParams, outParams));
 
                names.Add(entry.ValidIdentifierName);
            }
            else
            {
                // Detect if entry has conditional compilation symbols
                string entryValue = entry.Value;
                bool hasCondCompilation = StringValueHasCompilationSymbols(entryValue,
                                                                   conditionalCompilationSymbolsInValues);
 
                if(!hasCondCompilation)
                    EmitProperty(defaultReturnType, entry.ValidIdentifierName, entryValue, "", false, false);
                else
                {
                    // If has conditional compilation, generate one versino for each symbol
                    Dictionary<string, string> valuesForCondCompilation = SplitStringForConditionalCompilationSymbols
                                                              (entryValue, conditionalCompilationSymbolsInValues);
                    int c = -1;
                    foreach(string key in valuesForCondCompilation.Keys)
                    {
                        c++;
                        string rtype = defaultReturnType;
                        if(returnTypesForConditionalCompilation.ContainsKey(key))
                            rtype = returnTypesForConditionalCompilation[key];
 
                        EmitProperty(rtype, entry.ValidIdentifierName, valuesForCondCompilation[key],
                                                          key, c == 0, c == valuesForCondCompilation.Count - 1);
                    }
                }
                names.Add(entry.ValidIdentifierName);
            }
 
            thisIsFirstEntryInClass = false;
    }
 
 
    // Close out the current class when done, writing down the names
    if(currentClass != "")
    {
        EmitNamesInnerClass(names);
 
        if(generateEnumName != "")
            EmitEnum(names, generateEnumName);
 
        names.Clear();
 
        WriteLine("\t}");
    }
}
catch(Exception ex)
{
    Error(ex.ToString());
}
#>
 
<#
    // Only close the namespace if I added one
    if(AllEntries.Count > 0)
        WriteLine("}");
#>
 
 
 
<#+ // ------------------------------------------------------------------------------
    // Class feature control block:
    // Remarks: Identified by the #+ mark, allows to define variables, methods, etc
    // ------------------------------------------------------------------------------
    const string Kind_PhysicalFolder = "{6BB5F8EF-4483-11D3-8BCF-00C04F8EC28C}";
    bool AlwaysKeepTemplateDirty = true;
    static DTE Dte;
    static Project Project;
    static string AppRoot;
    static string RootNamespace;
    static List<ResourceEntry> AllEntries;
    static List<ResourceEntry> ControlEntries;
 
    /// <Summary>
    /// FindResourceFilesRecursivlyAndRecordEntries
    /// Remarks: Searches in the files of our project, for one that is in the same folder than this
    /// template, has the same name, and has the extension ".resx". If found, takes all string entries
    /// on it and stores them in the AllEntries list.
    /// </Summary>
    void FindResourceFilesRecursivlyAndRecordEntries(ProjectItems items, string path)
    {
        // I wanna take care about file path and name, but not about extension, so take everything but the extension
        string aux = Path.GetExtension(Host.TemplateFile);
        string T4FileWithoutExtension= Host.TemplateFile.Substring(0, Host.TemplateFile.Length - aux.Length);
 
        foreach(ProjectItem item in items)
        {       
 
            if(Path.GetExtension(item.Name) == ".resx")
            {
                    string itemFileName = item.FileNames[0];
                    if(itemFileName == null)
                            continue;
                    aux = Path.GetExtension(itemFileName);       
                    itemFileName = itemFileName.Substring(0, itemFileName.Length - aux.Length);       
 
                    // If the file path and name (without extension) is not equal to the template file, continue
                    if(itemFileName.ToLowerInvariant() != T4FileWithoutExtension.ToLowerInvariant())
                        continue;
 
                    RecordEntriesInResourceFile(item, path);
 
                    // We only want to parse one file. This should never happen, but if we find 2 files, just quit
                    break;
            }
            if(item.Kind == Kind_PhysicalFolder)
                FindResourceFilesRecursivlyAndRecordEntries(item.ProjectItems, path+"."+item.Name);
        }
    }
    /// <Summary>
    /// RecordEntriesInResourceFile
    /// Remarks: For a given file, takes all its entries and stores them in the AllEntries list.
    /// </Summary>
    void RecordEntriesInResourceFile(ProjectItem item, string path)
    {
        //skip resource files except those for the default culture
        if(Regex.IsMatch(item.Name, @".*\.[a-zA-z]{2}(-[a-zA-z]{2})?\.resx"))
                return;
 
        var filePath = (string)item.Properties.Item("FullPath").Value;
        var xml = new XmlDocument();
        xml.Load(filePath);
        var entries = xml.DocumentElement.SelectNodes("//data");
 
        var parentFile = item.Name.Replace(".resx", "");
        var fileType = Path.GetExtension(parentFile);
        if(fileType != null && fileType != "")
            parentFile = parentFile.Replace(fileType, "");
 
        foreach (XmlElement entryElement in entries)
        {
            var entry = new ResourceEntry
            {           
                Path = path != "" && path != null?path.Substring(1):"",
                File = MakeIntoValidIdentifier(parentFile),
                Type = fileType,
                OriginalName = entryElement.Attributes["name"].Value,               
            };
 
            var valueElement = entryElement.SelectSingleNode("value");
            if(valueElement != null)
                entry.Value = valueElement.InnerText;
 
            var commentElement = entryElement.SelectSingleNode("comment");
            if(commentElement != null)
                entry.Comment = commentElement.InnerText;
 
            if(entry.OriginalName.StartsWith("CT4_"))
                ControlEntries.Add(entry);
            else
            {
                // Parse the name into a valid identifier
                entry.ValidIdentifierName = MakeIntoValidIdentifier(entry.OriginalName);
 
                AllEntries.Add(entry);
 
            }
        }
    }
    /// <Summary>
    /// MakeIntoValidIdentifier
    /// Remarks:
    /// </Summary>
    string MakeIntoValidIdentifier(string arbitraryString)
    {
        var validIdentifier = Regex.Replace(arbitraryString, @"[^A-Za-z0-9-._]", " ");
        validIdentifier = ConvertToPascalCase(validIdentifier);
        if (Regex.IsMatch(validIdentifier, @"^\d")) validIdentifier = "_" + validIdentifier;
        return validIdentifier;
    }
    /// <Summary>
    /// ConvertToPascalCase
    /// Remarks:
    /// </Summary>
    string ConvertToPascalCase(string phrase)
    {
        string[] splittedPhrase = phrase.Split(' ', '-', '.');
        var sb = new StringBuilder();
 
        sb = new StringBuilder();
 
        foreach (String s in splittedPhrase)
        {
            char[] splittedPhraseChars = s.ToCharArray();
            if (splittedPhraseChars.Length > 0)
            {
                splittedPhraseChars[0] = ((new String(splittedPhraseChars[0], 1)).ToUpper().ToCharArray())[0];
            }
            sb.Append(new String(splittedPhraseChars));
        }
        return sb.ToString();
    }
    /// <Summary>
    /// EmitNamesInnerClass
    /// Remarks:
    /// </Summary>
    void EmitNamesInnerClass(List<string> names)
    {
        if(names.Any())
        {
            WriteLine("\r\n\t\tpublic static class Names");
            WriteLine("\t\t{");
            foreach(var name in names)
                WriteLine(string.Format("\t\t\tpublic const string {0} = \"{0}\";", name));
            WriteLine("\t\t}");
        }
    }
    /// <Summary>
    /// EmitNamesInnerClass
    /// Remarks:
    /// </Summary>
    void EmitEnum(List<string> names, string pEnumName)
    {
        if(!names.Any())
            return;
 
        WriteLine("\r\n\t\tpublic enum " + pEnumName);
        WriteLine("\t\t{");
        foreach(var name in names)
            WriteLine(string.Format("\t\t\t{0},", name));
        WriteLine("\t\t}");
 
        names.Clear();       
    }
    /// <Summary>
    /// StringValueHasCompilationSymbols
    /// Remarks: Returns true if a conditional compilation symbol mark (@symbol:) is found in a string
    /// </Summary>
    bool StringValueHasCompilationSymbols(string pValue, List<string> pConditionalCompilationSymbolsInValues)
    {
        foreach(string symb in pConditionalCompilationSymbolsInValues)
        {
            if(pValue.Contains(symb))
                return true;
        }
        return false;
    }
    /// <Summary>
    /// SplitStringForConditionalCompilationSymbols
    /// Remarks: Splits a string (thas has been checked, and has conditional compilation symbols), and
    /// returns a dictionary where the keys are the conditional compilation symbols, and the values are
    /// the values of the string for that symbols.
    /// </Summary>
    Dictionary<string, string> SplitStringForConditionalCompilationSymbols(string entryValue,
                                                    List<string> pConditionalCompilationSymbolsInValues)
    {
        Dictionary<string, string> retValue= new Dictionary<string, string>();
        string[] parts = entryValue.Split(new char[1]{';'}, StringSplitOptions.RemoveEmptyEntries);
        foreach(string part in parts)
        {
            foreach(string symb in pConditionalCompilationSymbolsInValues)
            {
 
                if(part.StartsWith(symb))
                {
                    string origSymbol = symb.Remove(0, 1);
 
                    origSymbol = origSymbol.Remove(origSymbol.Length - 1 , 1);
 
 
                    string val = part.Remove(0, symb.Length);
                    retValue.Add(origSymbol, val);
                    break;
                }
            }
        }
        return retValue;
    }
    /// <Summary>
    /// EmitProperty
    /// Remarks: Writes down a property of the return type specified, name and value, and allowing
    /// to add a conditionalcompilationSymbol
    /// </Summary>  
    void EmitProperty(string pReturnType, string pPropertyName, string pPropertyValue,
                      string pConditionalCompilationSymbol, bool pIsFirstConditionalCompilation,
                      bool pIsLastConditionalCompilation)
    {
        bool hasCondCompilation = (pConditionalCompilationSymbol != null && pConditionalCompilationSymbol != "");
 
        // Write opening conditional compilation
        if(hasCondCompilation)
        {
            if(pIsFirstConditionalCompilation)
                WriteLine(string.Format("\t\t#if({0})", pConditionalCompilationSymbol));
            else WriteLine(string.Format("\t\t#elif({0})", pConditionalCompilationSymbol));
        }
 
        // Write property
        switch(pReturnType)
        {
            case "string":
                WriteLine(string.Format("\t\tpublic static {0} {1} {{ get {{ return \"{2}\"; }} }}",
                                        pReturnType, pPropertyName, pPropertyValue));
                break;
            default:
                WriteLine(string.Format("\t\tpublic static {0} {1} {{ get {{ return {2}; }} }}",
                                        pReturnType, pPropertyName, pPropertyValue));
                break;
        }
 
        // Close cond compilation
        if(hasCondCompilation && pIsLastConditionalCompilation)
            WriteLine("\t\t#endif");
    }
    /// <Summary>
    /// EmitEntryComment
    /// Remarks: Writes down an entry comment as a properly formatted XML documentation comment
    /// </Summary>
    void EmitEntryComment(ResourceEntry entry, bool thisIsFirstEntryInClass)
    {
            // Insert the entry comment (if any) in a proper XML documentation format
            if(entry.Comment != null)
            {
                if(!thisIsFirstEntryInClass)
                    WriteLine("");                 
                WriteLine(string.Format("\r\n\t\t///<summary>\r\n\t\t///{0}\r\n\t\t///</summary>",
                                         entry.Comment.Replace("\r\n", "\r\n\t\t///")));
            }
            else WriteLine("");
    }
    /// <Summary>
    /// GetProjectContainingT4File
    /// Remarks:
    /// </Summary>
    Project GetProjectContainingT4File(DTE dte)
    {
 
        // Find the .tt file's ProjectItem
        ProjectItem projectItem = dte.Solution.FindProjectItem(Host.TemplateFile);
 
        // If the .tt file is not opened, open it
        if (projectItem.Document == null)
            projectItem.Open(Constants.vsViewKindCode);
 
        if (AlwaysKeepTemplateDirty) {
            // Mark the .tt file as unsaved. This way it will be saved and update itself next time the
            // project is built. Basically, it keeps marking itself as unsaved to make the next build work.
            // Note: this is certainly hacky, but is the best I could come up with so far.
            projectItem.Document.Saved = false;
        }
 
        return projectItem.ContainingProject;
    }
    /// <Summary>
    /// Struct: ResourceEntry
    /// Remarks: Stores information about an entry in a resource file
    /// </Summary>
    struct ResourceEntry
    {       
        public string Path { get; set; }
        public string File { get; set; }
        public string Type { get; set; }
        public string OriginalName { get; set; }
        public string ValidIdentifierName { get; set; }
        public string Value { get; set; }
        public string Comment { get; set; }
    }  
#>

Et voilà ! An input and output example

The above template, applied to the following input:
image
Produces the following output class:
// ------------------------------------------------------------------------------------------------------
// <auto-generated>
//     This code was generated by a tool.
//
//     Changes to this file may cause incorrect behavior and will be lost if
//     the code is regenerated.
// </auto-generated>
// ------------------------------------------------------------------------------------------------------
using System.Threading;
 
 
namespace GDNA.PencilBurst
{
public class Textures
{
        private static global::System.Resources.ResourceManager resourceMan;
 
        /// <summary>
        ///   Returns the cached ResourceManager instance used by this class.
        /// </summary>
        [global::System.ComponentModel.EditorBrowsableAttribute
                              (global::System.ComponentModel.EditorBrowsableState.Advanced)]
        private static global::System.Resources.ResourceManager ResourceManager
        {
            get
            {
                if (object.ReferenceEquals(resourceMan, null))
                {
                    global::System.Resources.ResourceManager temp = new global::System.Resources.ResourceManager
                                      ("GDNA.PencilBurst..Textures", typeof(Textures).Assembly);
                    resourceMan = temp;
                }
                return resourceMan;
            }
        }
 
        /// <summary>
        ///   Returns the formatted resource string.
        /// </summary>
        [global::System.ComponentModel.EditorBrowsableAttribute
                                           (global::System.ComponentModel.EditorBrowsableState.Advanced)]
        private static string GetResourceString(string key, params string[] tokens)
        {
            var culture = Thread.CurrentThread.CurrentCulture;
            var str = ResourceManager.GetString(key, culture);
 
            for(int i = 0; i < tokens.Length; i += 2)
                str = str.Replace(tokens[i], tokens[i+1]);
 
            return str;
        }
 
        /// <summary>
        /// Returns the formatted resource string, passing the enum value as parameter
        /// </summary>
        [global::System.ComponentModel.EditorBrowsableAttribute
                                              (global::System.ComponentModel.EditorBrowsableState.Advanced)]
        private static string GetResourceString(eTextureIDs key, params string[] tokens)
        {
            var culture = Thread.CurrentThread.CurrentCulture;
            var str = ResourceManager.GetString(key.ToString(), culture);
 
            for(int i = 0; i < tokens.Length; i += 2)
                str = str.Replace(tokens[i], tokens[i+1]);
 
            return str;
        }
 
 
        ///<summary>
        ///Button 1 image asset name or ID
        ///</summary>
        #if(WINDOWS_PHONE)
        public static string Button1 { get { return "Content\Textures\UI\button1"; } }
        #elif(ANDROID)
        public static int Button1 { get { return Resource.Drawable.app_Icon; } }
        #endif
 
        public static class Names
        {
            public const string Button1 = "Button1";
        }
 
        public enum eTextureIDs
        {
            Button1,
        }
    }
 
}
 
 
 
 

Other use cases

The possibilities are almost endless. You don´t need to stick to Resource Files (ResX) only. You can do this operations with almost anything. For example:
  • You can write a T4 Template for a “Contents” projects, that searches for Textures or Bitmaps in the project, and generates a Class that strong-types the names and/or paths of those textures. Creating your own Content Manager.
  • You can generate your own classes to give strong-type access to your Data-Sets, in a totally customized way.
  • Or you can generate a class that bases it’s strong type access in an enumeration, instead properties, something like the following:
internal class TexturesByEnum
    {
        private static global::System.Resources.ResourceManager resourceMan;
 
        /// <summary>
        ///   Returns the cached ResourceManager instance used by this class.
        /// </summary>
        [global::System.ComponentModel.EditorBrowsableAttribute
                                        (global::System.ComponentModel.EditorBrowsableState.Advanced)]
        private static global::System.Resources.ResourceManager ResourceManager
        {
            get
            {
                if (object.ReferenceEquals(resourceMan, null))
                {
                    global::System.Resources.ResourceManager temp =
                                                     new global::System.Resources.ResourceManager
                                                     ("GDNA.Render.Repository.Textures", typeof(Textures).Assembly);
                    resourceMan = temp;
                }
                return resourceMan;
            }
        }
 
        /// <summary>
        /// Returns the formatted resource string, passing the enum value as parameter
        /// </summary>
        [global::System.ComponentModel.EditorBrowsableAttribute
                                          (global::System.ComponentModel.EditorBrowsableState.Advanced)]
        private static string GetResourceString(eTextureIDs key, params string[] tokens)
        {
            var culture = Thread.CurrentThread.CurrentCulture;
            var str = ResourceManager.GetString(key.ToString(), culture);
 
            for (int i = 0; i < tokens.Length; i += 2)
                str = str.Replace(tokens[i], tokens[i + 1]);
 
            return str;
        }
 
        public enum eTextureIDs
        {
            Button1,
            Button2,
        }
 
        ///<summary>
        /// Indexed access to class
        ///</summary>
        public static string this[eTextureIDs id]
        {
            get
            {
                    return GetResourceString(id);
            }
        }
    }
 
This way, access to resources would be:
string aux = Textures[eTextureIDs.Button1];
 
instead of…
 
string aux = Textures.Button1;
As you can see, the customization possibilities are huge, and the examples countless.
So use your imagination !!
Cheers !