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I want to build a RESTful web service using ASP.NET Web API that third-party developers will use to access my application's data.

I've read quite a lot about OAuth and it seems to be the standard, but finding a good sample with documentation explaining how it works (and that actually does work!) seems to be incredibly difficult (especially for a newbie to OAuth).

Is there a sample that actually builds and works and shows how to implement this?

I've downloaded numerous samples:

  • DotNetOAuth - documentation is hopeless from a newbie perspective
  • Thinktecture - can't get it to build

I've also looked at blogs suggesting a simple token-based scheme (like this) - this seems like re-inventing the wheel but it does have the advantage of being conceptually fairly simple.

It seems there are many questions like this on SO but no good answers.

What is everybody doing in this space?

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6 Answers 6

We have managed to apply HMAC authentication to secure Web Api and it worked okay. Basically, HMAC authentication uses a secret key for each consumer which both consumer and server both know to hmac hash a message, HMAC256 should be used. Most of cases, hashed password of consumer is used as secret key.

The message normally is built from data in the HTTP request, or even customized data which is added into HTTP header, message might include:

  1. Timestamp: time that request is sent (UTC or GMT time)
  2. HTTP verb: GET, POST, PUT, DELETE.
  3. post data and query string,
  4. URL

Under the hood, HMAC authentication would be:

Consumer sends a HTTP request to web server, after building the signature (output of hmac hash), the template of HTTP request:

User-Agent: {agent}   
Host: {host}   
Timestamp: {timestamp}
Authentication: {username}:{signature}

Example for GET request:

GET /webapi.hmac/api/values

User-Agent: Fiddler    
Host: localhost    
Timestamp: Thursday, August 02, 2012 3:30:32 PM 
Authentication: cuongle:LohrhqqoDy6PhLrHAXi7dUVACyJZilQtlDzNbLqzXlw=

The message to hash to get signature:

GET\n
Thursday, August 02, 2012 3:30:32 PM\n
/webapi.hmac/api/values\n

Example for POST request with querystring (signature below is not correct, just an example)

POST /webapi.hmac/api/values?key2=value2

User-Agent: Fiddler    
Host: localhost    
Content-Type: application/x-www-form-urlencoded
Timestamp: Thursday, August 02, 2012 3:30:32 PM 
Authentication: cuongle:LohrhqqoDy6PhLrHAXi7dUVACyJZilQtlDzNbLqzXlw=

key1=value1&key3=value3

The message to hash to get signature

GET\n
Thursday, August 02, 2012 3:30:32 PM\n
/webapi.hmac/api/values\n
key1=value1&key2=value2&key3=value3

Please note that form data and query string should be in order, so the code on server get querystring and form data to build correct message.

When HTTP request comes to server, an authentication action filter is implemented to parse the request to get information: HTTP verb, timestamp, uri, form data and query string, then based on these to build signature (use hmac hash) with secret key (hashed password) on the server.

The secret key is got from database with username on the request.

Then server code compares the signature on the request with the signature built, if equal, authentication is passed, otherwise, it failed.

The code to build signature:

private static string ComputeHash(string hashedPassword, string message)
{
    var key = Encoding.UTF8.GetBytes(hashedPassword.ToUpper());
    string hashString;

    using (var hmac = new HMACSHA256(key))
    {
        var hash = hmac.ComputeHash(Encoding.UTF8.GetBytes(message));
        hashString = Convert.ToBase64String(hash);
    }

    return hashString;
}

So, how to prevent relay attack?

Add constraint for the timestamp, something like:

servertime - X minutes|seconds  <= timestamp <= servertime + X minutes|seconds 

(servertime: time of request comming to server)

And, cache the signature of request in memory (use MemoryCache, should keep in limit of time). If the next request comes with the same signature with previous request, it will be rejected.

The demo code is put as here: https://github.com/cuongle/Hmac.WebApi

share|improve this answer
    
Thanks, that's useful code to look at. Did you have some client code too? –  Craig Shearer Aug 2 '12 at 22:14
2  
@James: only timestamp seems not sufficient much, during short of time they may simulate the request and sent to server, I have just edited my post, use both would be the best. –  Cuong Le Sep 13 '12 at 14:29
1  
Are you sure this is working as it should? you are hashing the timestamp with the message and caching that message. This would mean a different signature each request which would render your cached signature useless. –  Filip Stas Apr 12 '13 at 9:22
1  
@FilipStas: seems I don't get your point, the reason to use Cache in here is to prevent relay attack, nothing more –  Cuong Le Apr 12 '13 at 9:34
1  
@ChrisO: You can refer [this page] (jokecamp.wordpress.com/2012/10/21/…). I will update this source soon –  Cuong Le Jun 7 '13 at 12:22

Have you tried DevDefined.OAuth?

I have used it to secure my WebApi with 2-Legged OAuth. I have also successfully tested it with PHP clients.

It's quite easy to add support for OAuth using this library. Here's how you can implement the provider for ASP.NET MVC Web API:

1) Get the source code of DevDefined.OAuth: https://github.com/bittercoder/DevDefined.OAuth - the newest version allows for OAuthContextBuilder extensibility.

2) Build the library and reference it in your Web API project.

3) Create a custom context builder to support building a context from HttpRequestMessage:

using System;
using System.Collections.Generic;
using System.Collections.Specialized;
using System.Diagnostics.CodeAnalysis;
using System.Linq;
using System.Net.Http;
using System.Web;

using DevDefined.OAuth.Framework;

public class WebApiOAuthContextBuilder : OAuthContextBuilder
{
    public WebApiOAuthContextBuilder()
        : base(UriAdjuster)
    {
    }

    public IOAuthContext FromHttpRequest(HttpRequestMessage request)
    {
        var context = new OAuthContext
            {
                RawUri = this.CleanUri(request.RequestUri), 
                Cookies = this.CollectCookies(request), 
                Headers = ExtractHeaders(request), 
                RequestMethod = request.Method.ToString(), 
                QueryParameters = request.GetQueryNameValuePairs()
                    .ToNameValueCollection(), 
            };

        if (request.Content != null)
        {
            var contentResult = request.Content.ReadAsByteArrayAsync();
            context.RawContent = contentResult.Result;

            try
            {
                // the following line can result in a NullReferenceException
                var contentType = 
                    request.Content.Headers.ContentType.MediaType;
                context.RawContentType = contentType;

                if (contentType.ToLower()
                    .Contains("application/x-www-form-urlencoded"))
                {
                    var stringContentResult = request.Content
                        .ReadAsStringAsync();
                    context.FormEncodedParameters = 
                        HttpUtility.ParseQueryString(stringContentResult.Result);
                }
            }
            catch (NullReferenceException)
            {
            }
        }

        this.ParseAuthorizationHeader(context.Headers, context);

        return context;
    }

    protected static NameValueCollection ExtractHeaders(
        HttpRequestMessage request)
    {
        var result = new NameValueCollection();

        foreach (var header in request.Headers)
        {
            var values = header.Value.ToArray();
            var value = string.Empty;

            if (values.Length > 0)
            {
                value = values[0];
            }

            result.Add(header.Key, value);
        }

        return result;
    }

    protected NameValueCollection CollectCookies(
        HttpRequestMessage request)
    {
        IEnumerable<string> values;

        if (!request.Headers.TryGetValues("Set-Cookie", out values))
        {
            return new NameValueCollection();
        }

        var header = values.FirstOrDefault();

        return this.CollectCookiesFromHeaderString(header);
    }

    /// <summary>
    /// Adjust the URI to match the RFC specification (no query string!!).
    /// </summary>
    /// <param name="uri">
    /// The original URI. 
    /// </param>
    /// <returns>
    /// The adjusted URI. 
    /// </returns>
    private static Uri UriAdjuster(Uri uri)
    {
        return
            new Uri(
                string.Format(
                    "{0}://{1}{2}{3}", 
                    uri.Scheme, 
                    uri.Host, 
                    uri.IsDefaultPort ?
                        string.Empty :
                        string.Format(":{0}", uri.Port), 
                    uri.AbsolutePath));
    }
}

4) Use this tutorial for creating an OAuth provider: http://code.google.com/p/devdefined-tools/wiki/OAuthProvider. In the last step (Accessing Protected Resource Example) you can use this code in your AuthorizationFilterAttribute attribute:

public override void OnAuthorization(HttpActionContext actionContext)
{
    // the only change I made is use the custom context builder from step 3:
    OAuthContext context = 
        new WebApiOAuthContextBuilder().FromHttpRequest(actionContext.Request);

    try
    {
        provider.AccessProtectedResourceRequest(context);

        // do nothing here
    }
    catch (OAuthException authEx)
    {
        // the OAuthException's Report property is of the type "OAuthProblemReport", it's ToString()
        // implementation is overloaded to return a problem report string as per
        // the error reporting OAuth extension: http://wiki.oauth.net/ProblemReporting
        actionContext.Response = new HttpResponseMessage(HttpStatusCode.Unauthorized)
            {
               RequestMessage = request, ReasonPhrase = authEx.Report.ToString()
            };
    }
}

I have implemented my own provider so I haven't tested the above code (except of course the WebApiOAuthContextBuilder which I'm using in my provider) but it should work fine.

share|improve this answer
    
Thanks - I'll take a look at this, though for now I've rolled my own HMAC-based solution. –  Craig Shearer Aug 16 '12 at 1:04
1  
@CraigShearer - hi, you say you've rolled your own.. just had a few questions if you don't mind sharing. I'm in a similar position, where i have a relatively small MVC Web API. The API controllers sit alongside other controller/actions which are under forms auth. Implementing OAuth seems an overkill when I already have a membership provider i could use and I only need to secure a handful of operations. I really want an auth action that returns an encrypted token - then used the token in subsequent calls? any info welcome before I commit to implementing an existing auth solution. thanks! –  sambomartin Dec 4 '12 at 9:03
    
@Maksymilian Majer - Any chance you can share how you've implemented the provider in more detail? I'm having some problems sending responses back to the client. –  jlrolin Jan 17 '14 at 4:34

I would suggest starting with the simplest solutions first - maybe simple HTTP Basic Authentication + HTTPS is enough in your scenario?

If not (for example you cannot use https, or need more complex key management) you may have a look at HMAC-based solutions as suggested by others. A good example of such api would be Amazon S3 (http://s3.amazonaws.com/doc/s3-developer-guide/RESTAuthentication.html)

I wrote a blog post about HMAC based authentication in ASP.NET Web API.It discusses both Web API service and Web API client and the code is is available on bitbucket. http://www.piotrwalat.net/hmac-authentication-in-asp-net-web-api/

Here is a post about Basic Authentication in Web API: http://www.piotrwalat.net/basic-http-authentication-in-asp-net-web-api-using-message-handlers/

Remember that if you are going to provide an API to 3rd parties, you will also most likely be responsible for providing client libraries. Basic authentication has a great advantage here as it is supported on most programming platforms out of the box. HMAC on the other hand is not that standardized and will require custom implementation. These should be relatively straightforward, but still require work.

PS. There is also an option to use HTTPS + certificates - http://www.piotrwalat.net/client-certificate-authentication-in-asp-net-web-api-and-windows-store-apps/

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Web API introduced an Attribute [Authorize] to provide security. This can be set globally (global.asx)

public static void Register(HttpConfiguration config)
{
    config.Filters.Add(new AuthorizeAttribute());
}

Or per controller:

[Authorize]
public class ValuesController : ApiController{
...

Of course your type of authentication may vary and you may want to perform your own authentication, when this occurs you may find useful inheriting from Authorizate Attribute and extending it to meet your requirements:

public class DemoAuthorizeAttribute : AuthorizeAttribute
{
    public override void OnAuthorization(System.Web.Http.Controllers.HttpActionContext actionContext)
    {
        if (Authorize(actionContext))
        {
            return;
        }
        HandleUnauthorizedRequest(actionContext);
    }

    protected override void HandleUnauthorizedRequest(System.Web.Http.Controllers.HttpActionContext actionContext)
    {
        var challengeMessage = new System.Net.Http.HttpResponseMessage(System.Net.HttpStatusCode.Unauthorized);
        challengeMessage.Headers.Add("WWW-Authenticate", "Basic");
        throw new HttpResponseException(challengeMessage);
    }

    private bool Authorize(System.Web.Http.Controllers.HttpActionContext actionContext)
    {
        try
        {
            var someCode = (from h in actionContext.Request.Headers where h.Key == "demo" select h.Value.First()).FirstOrDefault();
            return someCode == "myCode";
        }
        catch (Exception)
        {
            return false;
        }
    }
}

And in your controller:

[DemoAuthorize]
public class ValuesController : ApiController{

Here is a link on other custom implemenation for WebApi Authorizations:

http://www.piotrwalat.net/basic-http-authentication-in-asp-net-web-api-using-membership-provider/

share|improve this answer
    
Thanks for the example @Dalorzo, but I have some issues. I looked at the attached link, but following that instructions doesn't quite work. I also found needed info missing. Firstly, when I create the new project, is it right to choose Individual User Accounts for authentication? Or do I leave it at no authentication. I'm also not getting the mentioned 302 error, but am getting a 401 error. Lastly, how do I pass the needed info from my view to the controller? What must my ajax call look like? Btw, I'm using forms authentication for my MVC views. Is that a problem? –  Amanda Feb 20 at 13:23

I liked Cuong Le's answer and will look into it. Part of our API does not require authentication, for the rest we are using BASIC authentication over HTTPs and it seem to be serving us OK, at least for the version 1. It's probably not as secure as OAuth but also it's not as complicated to implement.

We have created BasicAuthenticationAttribute which implements IAuthorizationFilter interface. Each API Controller or individual endpoint requires authentication has to carry this Attribute, and the endpoint will only be executed if authentication is successful.

This is secure enough for us as our API is consumed from native apps and we force the clients to only pass MD5 hash of the password in the Authorization header, so the real password is not exposed. We impose extra security on the clients by forcing them to use public/private API keys. This is how it works.

  1. Clients makes sure they provide Authorization header as per Basic Auth specs (basically concatenated username + ';' password (MD5 hash) string converted to Base64).
  2. On server, BasicAuthorizationFilter checks for Authorization header, if not provided, requests for it.
  3. Parse the username and password from the Authorization header, then check to see the credentials in the CACHE (from previous requests), if found compare the password hash and if it does not match return UnAuthorized (401) error code.
  4. If the credentials are not in the CACHE, find them in the database, if password does not match then return 401
  5. Add credentials to the CACHE, so next auth is quick.
  6. Invoke the API controller endpoint.

Here is the code...

public async Task<HttpResponseMessage> ExecuteAuthorizationFilterAsync(System.Web.Http.Controllers.HttpActionContext actionContext,
                                                                       System.Threading.CancellationToken cancellationToken,
                                                                       Func<System.Threading.Tasks.Task<HttpResponseMessage>> continuation)
{
    // Check to see if we have the Authorization header, if not then as per Basic Authentication specification
    // We have to ask for it.
    if (actionContext.Request.Headers.Authorization == null)
    {
        var response = new System.Net.Http.HttpResponseMessage(System.Net.HttpStatusCode.Unauthorized);
        response.Headers.WwwAuthenticate.Add(new AuthenticationHeaderValue("Basic", "realm=\"" + _WEBAPI_REALM + "\""));

        actionContext.Response = response;
        return response;
    }

    // OK, so we do have Authorization header, lets parse the user name.
    try
    {
        string authToken = actionContext.Request.Headers.Authorization.Parameter;
        string decodedToken = System.Text.Encoding.UTF8.GetString(Convert.FromBase64String(authToken));

        string username = decodedToken.Substring(0, decodedToken.IndexOf(_AUTH_TOKEN_SEPERATOR));
        string password = decodedToken.Substring(decodedToken.IndexOf(_AUTH_TOKEN_SEPERATOR) + 1);

        // If you are using CACHING then before we go and check the Database lets see if we have the identity in the local cache.
        // This could be asp.net cache, Azure or anything...
        string hashedToken = WorldRemit.Core.Utilities.HashUtilities.CreateHash(decodedToken);
        string cachedKey = string.Format("Account/{0}", hashedToken);

        bool authorized = false;
        var cachedIdentity = await CachedRepository.Get<ApiIdentity>(cachedKey, false);
        {
            if (cachedIdentity != null &&
                cachedIdentity.IsAuthenticated &&
                cachedIdentity.LastActivityTimestamp.HasValue &&
                DateTime.Now.Subtract(cachedIdentity.LastActivityTimestamp.Value).TotalMinutes < _CacheExpirythresholdInMinutes &&
                !string.IsNullOrWhiteSpace(cachedIdentity.Token))
            {
                // we found cached identity, just compare the AUTH token, if not the same then we know these are wrong
                // username/password.
                if (!hashedToken.Equals(cachedIdentity.Token, StringComparison.Ordinal))
                {
                    actionContext.Response = new System.Net.Http.HttpResponseMessage(System.Net.HttpStatusCode.Unauthorized);
                    return actionContext.Response;
                }

                cachedIdentity.LastActivityTimestamp = DateTime.Now;
                await CachedRepository.Put(cachedKey, cachedIdentity, false);

                authorized = true;
            }
        }

        if (!authorized)
        {
            // Now find a user for this username. and then validate the credentials (only compare the hashed password)
            using (var connection = SQLHelper.InitializeConnection())
            {
                // YOUR CODE TO FIND THE CREDENTIALS IN THE DB AND VALIDATE THEM.

                // Assuming the crdentials are right, add them to the CACHE, so the subsequent API calls don't have
                // to make round trip to the Database.

                ApiIdentity identity = new ApiIdentity(hashedToken);
                identity.AuthenticationType = "Basic";
                identity.LastActivityTimestamp = DateTime.Now;
                identity.IsAuthenticated = true;

                await CachedRepository.Put(cachedKey, identity, false);
            }
        }
    }
    catch (Exception ex)
    {
        // Let the consumer know that the authorization header was wrong!
        actionContext.Response = new System.Net.Http.HttpResponseMessage(System.Net.HttpStatusCode.Unauthorized);
        return actionContext.Response;
    }

    // Now run the actual API Controller endpoint.
    return await continuation.Invoke();
}

Hope this helps!

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If you want to secure your API in a server to server fashion (no redirection to website for 2 legged authentication). You can look at OAuth2 Client Credentials Grant protocol.

https://dev.twitter.com/docs/auth/application-only-auth

I have developed a library that can help you easily add this kind of support to your WebAPI. You can install it as a NuGet package:

https://nuget.org/packages/OAuth2ClientCredentialsGrant/1.0.0.0

The library targets .NET Framework 4.5.

Once you add the package to your project, it will create a readme file in the root of your project. You can look at that readme file to see how to configure/use this package.

Cheers!

share|improve this answer
3  
Are you sharing/providing source code for this framework as open source? –  barrypicker Oct 1 '14 at 20:25

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