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TestController.cs
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TestController.cs
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using System.Text;
using System.Text.Json;
using System.Text.Json.Serialization;
using Fido2NetLib;
using Fido2NetLib.Development;
using Fido2NetLib.Objects;
using Microsoft.AspNetCore.Mvc;
using Microsoft.Extensions.Options;
namespace Fido2Demo;
public class TestController : Controller
{
/* CONFORMANCE TESTING ENDPOINTS */
private static readonly DevelopmentInMemoryStore _demoStorage = new();
private readonly IFido2 _fido2;
private readonly string _origin;
public TestController(IOptions<Fido2Configuration> fido2Configuration)
{
_origin = fido2Configuration.Value.FullyQualifiedOrigins.FirstOrDefault();
_fido2 = new Fido2(new Fido2Configuration
{
ServerDomain = fido2Configuration.Value.ServerDomain,
ServerName = fido2Configuration.Value.ServerName,
Origins = fido2Configuration.Value.FullyQualifiedOrigins,
},
ConformanceTesting.MetadataServiceInstance(
System.IO.Path.Combine(fido2Configuration.Value.MDSCacheDirPath, @"Conformance"), _origin)
);
}
[HttpPost]
[Route("/attestation/options")]
public OkObjectResult MakeCredentialOptionsTest([FromBody] TEST_MakeCredentialParams opts)
{
var attType = opts.Attestation;
var username = Array.Empty<byte>();
try
{
username = Base64Url.Decode(opts.Username);
}
catch (FormatException)
{
username = Encoding.UTF8.GetBytes(opts.Username);
}
// 1. Get user from DB by username (in our example, auto create missing users)
var user = _demoStorage.GetOrAddUser(opts.Username, () => new Fido2User
{
DisplayName = opts.DisplayName,
Name = opts.Username,
Id = username // byte representation of userID is required
});
// 2. Get user existing keys by username
var existingKeys = _demoStorage.GetCredentialsByUser(user).Select(c => c.Descriptor).ToList();
//var exts = new AuthenticationExtensionsClientInputs() { Extensions = true, UserVerificationIndex = true, Location = true, UserVerificationMethod = true, BiometricAuthenticatorPerformanceBounds = new AuthenticatorBiometricPerfBounds { FAR = float.MaxValue, FRR = float.MaxValue } };
var exts = new AuthenticationExtensionsClientInputs() { };
if (opts.Extensions?.Example != null)
exts.Example = opts.Extensions.Example;
// 3. Create options
var options = _fido2.RequestNewCredential(user, existingKeys, opts.AuthenticatorSelection, opts.Attestation, exts);
// 4. Temporarily store options, session/in-memory cache/redis/db
HttpContext.Session.SetString("fido2.attestationOptions", options.ToJson());
// 5. return options to client
var jsonResponse = JsonSerializer.SerializeToNode(options);
jsonResponse["status"] = "ok";
jsonResponse["errorMessage"] = "";
return new OkObjectResult(jsonResponse);
}
[HttpPost]
[Route("/attestation/result")]
public async Task<OkObjectResult> MakeCredentialResultTestAsync([FromBody] AuthenticatorAttestationRawResponse attestationResponse, CancellationToken cancellationToken)
{
// 1. get the options we sent the client
var jsonOptions = HttpContext.Session.GetString("fido2.attestationOptions");
var options = CredentialCreateOptions.FromJson(jsonOptions);
// 2. Create callback so that lib can verify credential id is unique to this user
IsCredentialIdUniqueToUserAsyncDelegate callback = static async (args, cancellationToken) =>
{
var users = await _demoStorage.GetUsersByCredentialIdAsync(args.CredentialId, cancellationToken);
return users.Count <= 0;
};
// 2. Verify and make the credentials
var credential = await _fido2.MakeNewCredentialAsync(attestationResponse, options, callback, cancellationToken: cancellationToken);
// 3. Store the credentials in db
_demoStorage.AddCredentialToUser(options.User, new StoredCredential
{
Id = credential.Id,
PublicKey = credential.PublicKey,
UserHandle = credential.User.Id,
SignCount = credential.SignCount
});
// 4. return "ok" to the client
var jsonResponse = JsonSerializer.SerializeToNode(credential);
jsonResponse["status"] = "ok";
jsonResponse["errorMessage"] = "";
return new OkObjectResult(jsonResponse);
}
[HttpPost]
[Route("/assertion/options")]
public IActionResult AssertionOptionsTest([FromBody] TEST_AssertionClientParams assertionClientParams)
{
var username = assertionClientParams.Username;
// 1. Get user from DB
var user = _demoStorage.GetUser(username);
if (user == null)
return NotFound("username was not registered");
// 2. Get registered credentials from database
var existingCredentials = _demoStorage.GetCredentialsByUser(user).Select(c => c.Descriptor).ToList();
var uv = assertionClientParams.UserVerification;
if (null != assertionClientParams.authenticatorSelection)
uv = assertionClientParams.authenticatorSelection.UserVerification;
var exts = new AuthenticationExtensionsClientInputs
{
AppID = _origin,
UserVerificationMethod = true
};
if (null != assertionClientParams.Extensions && null != assertionClientParams.Extensions.Example)
exts.Example = assertionClientParams.Extensions.Example;
// 3. Create options
var options = _fido2.GetAssertionOptions(
existingCredentials,
uv,
exts
);
// 4. Temporarily store options, session/in-memory cache/redis/db
HttpContext.Session.SetString("fido2.assertionOptions", options.ToJson());
// 5. Return options to client
var jsonResponse = JsonSerializer.SerializeToNode(options);
jsonResponse["status"] = "ok";
jsonResponse["errorMessage"] = "";
return new OkObjectResult(jsonResponse);
}
[HttpPost]
[Route("/assertion/result")]
public async Task<JsonResult> MakeAssertionTestAsync([FromBody] AuthenticatorAssertionRawResponse clientResponse, CancellationToken cancellationToken)
{
// 1. Get the assertion options we sent the client
var jsonOptions = HttpContext.Session.GetString("fido2.assertionOptions");
var options = AssertionOptions.FromJson(jsonOptions);
// 2. Get registered credential from database
var creds = _demoStorage.GetCredentialById(clientResponse.Id);
// 3. Get credential counter from database
var storedCounter = creds.SignCount;
// 4. Create callback to check if user handle owns the credentialId
IsUserHandleOwnerOfCredentialIdAsync callback = static async (args, cancellationToken) =>
{
var storedCreds = await _demoStorage.GetCredentialsByUserHandleAsync(args.UserHandle, cancellationToken);
return storedCreds.Exists(c => c.Descriptor.Id.SequenceEqual(args.CredentialId));
};
// 5. Make the assertion
var res = await _fido2.MakeAssertionAsync(clientResponse, options, creds.PublicKey, creds.DevicePublicKeys, storedCounter, callback, cancellationToken: cancellationToken);
// 6. Store the updated counter
_demoStorage.UpdateCounter(res.CredentialId, res.SignCount);
if (res.DevicePublicKey is not null)
creds.DevicePublicKeys.Add(res.DevicePublicKey);
// 7. return OK to client
return Json(new
{
status = "ok"
});
}
/// <summary>
/// For testing
/// </summary>
public class TEST_AssertionClientParams
{
public string Username { get; set; }
public UserVerificationRequirement? UserVerification { get; set; }
public AuthenticatorSelection authenticatorSelection { get; set; }
public AuthenticationExtensionsClientOutputs Extensions { get; set; }
}
public class TEST_MakeCredentialParams
{
public string DisplayName { get; set; }
public string Username { get; set; }
public AttestationConveyancePreference Attestation { get; set; }
public AuthenticatorSelection AuthenticatorSelection { get; set; }
public AuthenticationExtensionsClientOutputs Extensions { get; set; }
}
}