fix(security): M2.19 review nits — idle/refresh config guard + adapter tests + dead-var/doc cleanup (#15)
- Add SecurityOptionsValidator (IValidateOptions<SecurityOptions>) enforcing RoleRefreshThresholdMinutes < IdleTimeoutMinutes; registered with ValidateOnStart in AddSecurity — startup FAILS if threshold >= idle, so the invariant cannot be silently misconfigured away. - Update SecurityOptions XML-docs: class-level summary distinguishes JWT Bearer path (JwtSigningKey/JwtExpiryMinutes) from Blazor cookie session path (IdleTimeoutMinutes/ RoleRefreshThresholdMinutes); both time fields document the ~45-min effective idle window and the new cross-field constraint. - Remove dead jwtService variable from /auth/login lambda in AuthEndpoints.cs (resolved but never used since login moved to SessionClaimBuilder). - Extract ApplyValidationResultAsync helper from OnValidatePrincipalAsync (pure decision-application step); add 3 adapter tests covering Reject → RejectPrincipal + SignOutAsync; Replace → ReplacePrincipal + ShouldRenew; Keep → no-op. - Fix inaccurate TryRefreshAsync comment (dropped "OR last-activity needs advancing" — the code only returns non-null when roleRefreshDue). - Add InternalsVisibleTo for Security.Tests in Security.csproj. - Add IsRoleRefreshDue tests: missing claim → due; unparsable claim → due; plus integration test covering the full ValidateAsync path for a principal missing zb:lastrolerefresh (triggers refresh + re-stamps anchor rather than keeping stale principal forever). - Add SecurityOptionsValidatorConfigGuardTests: default succeeds; equal fails; greater fails; boundary (idle-1) succeeds; wiring confirmed via AddSecurity container.
This commit is contained in:
@@ -1,5 +1,8 @@
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using System.Security.Claims;
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using Microsoft.AspNetCore.Authentication;
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using Microsoft.AspNetCore.Authentication.Cookies;
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using Microsoft.AspNetCore.Http;
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using Microsoft.Extensions.DependencyInjection;
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using Microsoft.Extensions.Logging.Abstractions;
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using Microsoft.Extensions.Options;
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using ZB.MOM.WW.Auth.Abstractions.Roles;
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@@ -269,6 +272,81 @@ public class CookieSessionValidatorTests
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Assert.False(sut.IsRoleRefreshDue(principal, Start.AddMinutes(15)));
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Assert.True(sut.IsRoleRefreshDue(principal, Start.AddMinutes(15).AddSeconds(1)));
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}
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// --- Missing/unparsable zb:lastrolerefresh anchor treated as refresh-due ---
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[Fact]
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public async Task ValidateAsync_MissingLastRoleRefreshClaim_TreatedAsRefreshDue_RefreshesAndRestamps()
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{
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// Mirrors the existing MissingLastActivityClaim_TreatedAsIdleTimedOut test but for
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// the role-refresh anchor. A principal whose zb:lastrolerefresh claim is absent or
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// unparsable must be treated as "refresh due" (refresh now + re-stamp the anchor),
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// NOT as "never refresh". This prevents a stale principal from coasting forever
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// without a role re-check just because the claim was missing.
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var clock = new TestTimeProvider(Start);
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// The mapper returns a different mapping than the one encoded in the session, so we
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// can confirm the refresh actually ran.
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var mapper = new FakeGroupRoleMapper(new RoleMappingResult([Roles.Viewer], [], false));
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var sut = CreateValidator(mapper, clock);
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// Build a principal that has a valid LastActivity (not timed out) but NO lastrolerefresh.
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var identity = new ClaimsIdentity([
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new Claim(ClaimTypes.Name, "alice"),
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new Claim(JwtTokenService.UsernameClaimType, "alice"),
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new Claim(JwtTokenService.DisplayNameClaimType, "Alice"),
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new Claim(JwtTokenService.RoleClaimType, Roles.Administrator),
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new Claim(JwtTokenService.LastActivityClaimType, Start.ToString("o")),
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// Deliberately NO zb:lastrolerefresh claim.
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], CookieAuthenticationDefaults.AuthenticationScheme,
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nameType: ClaimTypes.Name,
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roleType: JwtTokenService.RoleClaimType);
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var principal = new ClaimsPrincipal(identity);
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var result = await sut.ValidateAsync(principal);
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// Must have triggered a refresh (Replace), NOT Keep.
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Assert.Equal(SessionValidationAction.Replace, result.Action);
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Assert.Equal(1, mapper.CallCount);
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// The rebuilt principal carries the new mapping (Viewer, not Administrator).
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var newRoles = result.Principal!.FindAll(JwtTokenService.RoleClaimType).Select(c => c.Value).ToList();
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Assert.Contains(Roles.Viewer, newRoles);
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Assert.DoesNotContain(Roles.Administrator, newRoles);
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// A new lastrolerefresh anchor was stamped.
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var refreshClaim = result.Principal.FindFirst(JwtTokenService.LastRoleRefreshClaimType);
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Assert.NotNull(refreshClaim);
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Assert.True(DateTimeOffset.TryParse(refreshClaim!.Value, out _));
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}
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[Fact]
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public void IsRoleRefreshDue_MissingClaim_ReturnsDue()
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{
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// Direct helper test: a principal with no zb:lastrolerefresh claim returns true.
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var clock = new TestTimeProvider(Start);
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var sut = CreateValidator(new FakeGroupRoleMapper(new RoleMappingResult([], [], false)), clock);
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var identity = new ClaimsIdentity([new Claim(ClaimTypes.Name, "alice")],
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CookieAuthenticationDefaults.AuthenticationScheme);
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var principal = new ClaimsPrincipal(identity);
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Assert.True(sut.IsRoleRefreshDue(principal, Start));
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}
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[Fact]
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public void IsRoleRefreshDue_UnparsableClaim_ReturnsDue()
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{
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// A present but unparsable zb:lastrolerefresh claim is treated as due, not as a
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// parse error that keeps the session stale forever.
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var clock = new TestTimeProvider(Start);
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var sut = CreateValidator(new FakeGroupRoleMapper(new RoleMappingResult([], [], false)), clock);
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var identity = new ClaimsIdentity([
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new Claim(ClaimTypes.Name, "alice"),
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new Claim(JwtTokenService.LastRoleRefreshClaimType, "not-a-date"),
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], CookieAuthenticationDefaults.AuthenticationScheme);
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var principal = new ClaimsPrincipal(identity);
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Assert.True(sut.IsRoleRefreshDue(principal, Start));
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}
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}
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/// <summary>
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@@ -360,3 +438,249 @@ public class SessionClaimBuilderParityTests
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}
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#endregion
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#region M2.19 (#15): OnValidatePrincipalAsync adapter — translation from SessionValidationResult to cookie context calls
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/// <summary>
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/// Tests for the <c>ApplyValidationResultAsync</c> helper extracted from
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/// <see cref="ServiceCollectionExtensions.OnValidatePrincipalAsync"/>: verifies that each
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/// <see cref="SessionValidationResult"/> case is correctly translated into the
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/// corresponding <see cref="CookieValidatePrincipalContext"/> mutations.
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/// The pure decision-application step is tested in isolation — the DI-resolution of
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/// <see cref="CookieSessionValidator"/> is a separate concern covered by the integration
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/// wiring tests in <see cref="SecurityReviewRegressionTests"/>.
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/// </summary>
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public class OnValidatePrincipalAdapterTests
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{
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private static readonly DateTimeOffset AdapterStart = new(2026, 6, 15, 12, 0, 0, TimeSpan.Zero);
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// A minimal IAuthenticationService stub that records SignOut calls so we can assert
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// the Reject path actually invokes SignOutAsync.
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private sealed class StubAuthenticationService : IAuthenticationService
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{
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public int SignOutCallCount { get; private set; }
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public Task<AuthenticateResult> AuthenticateAsync(HttpContext context, string? scheme) =>
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Task.FromResult(AuthenticateResult.NoResult());
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public Task ChallengeAsync(HttpContext context, string? scheme, AuthenticationProperties? properties) =>
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Task.CompletedTask;
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public Task ForbidAsync(HttpContext context, string? scheme, AuthenticationProperties? properties) =>
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Task.CompletedTask;
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public Task SignInAsync(HttpContext context, string? scheme, ClaimsPrincipal principal, AuthenticationProperties? properties) =>
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Task.CompletedTask;
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public Task SignOutAsync(HttpContext context, string? scheme, AuthenticationProperties? properties)
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{
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SignOutCallCount++;
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return Task.CompletedTask;
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}
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}
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private static (CookieValidatePrincipalContext Context, StubAuthenticationService AuthService)
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BuildContext(ClaimsPrincipal principal)
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{
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var authService = new StubAuthenticationService();
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var services = new ServiceCollection();
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services.AddSingleton<IAuthenticationService>(authService);
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services.AddLogging();
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var serviceProvider = services.BuildServiceProvider();
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var httpContext = new DefaultHttpContext { RequestServices = serviceProvider };
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var ticket = new AuthenticationTicket(
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principal,
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new AuthenticationProperties(),
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CookieAuthenticationDefaults.AuthenticationScheme);
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var scheme = new AuthenticationScheme(
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CookieAuthenticationDefaults.AuthenticationScheme,
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displayName: null,
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handlerType: typeof(CookieAuthenticationHandler));
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var context = new CookieValidatePrincipalContext(
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httpContext,
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scheme,
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new CookieAuthenticationOptions(),
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ticket);
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return (context, authService);
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}
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private static ClaimsPrincipal AuthenticatedPrincipal() =>
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SessionClaimBuilder.Build(
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"alice", "Alice",
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["SCADA-Admins"],
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new RoleMappingResult([Roles.Administrator], [], true),
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AdapterStart);
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[Fact]
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public async Task ApplyResult_Reject_CallsRejectPrincipalAndSignsOut()
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{
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// The Reject result is the idle-timeout path: the adapter must call RejectPrincipal
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// (sets Principal = null) AND SignOutAsync so the cookie is cleared for the next request.
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var principal = AuthenticatedPrincipal();
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var (ctx, authService) = BuildContext(principal);
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await ServiceCollectionExtensions.ApplyValidationResultAsync(ctx, SessionValidationResult.Reject);
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// RejectPrincipal() sets Principal to null.
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Assert.Null(ctx.Principal);
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// SignOutAsync must have been invoked exactly once.
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Assert.Equal(1, authService.SignOutCallCount);
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// ShouldRenew must NOT be set — we are expiring, not renewing.
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Assert.False(ctx.ShouldRenew);
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}
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[Fact]
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public async Task ApplyResult_Replace_ReplacesAndSetsRenew()
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{
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// The Replace result is the role-refresh path: the adapter must swap in the new
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// principal and set ShouldRenew = true so the cookie is re-issued with the new claims.
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var newPrincipal = SessionClaimBuilder.Build(
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"alice", "Alice",
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["SCADA-Admins"],
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new RoleMappingResult([Roles.Viewer], [], false),
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AdapterStart.AddMinutes(16));
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var originalPrincipal = AuthenticatedPrincipal();
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var (ctx, authService) = BuildContext(originalPrincipal);
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await ServiceCollectionExtensions.ApplyValidationResultAsync(ctx, SessionValidationResult.Replace(newPrincipal));
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Assert.Same(newPrincipal, ctx.Principal);
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Assert.True(ctx.ShouldRenew);
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Assert.Equal(0, authService.SignOutCallCount);
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}
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[Fact]
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public async Task ApplyResult_Keep_LeavesContextUnchanged()
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{
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// The Keep result is the no-op path (no refresh due, or a swallowed refresh fault):
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// the adapter must leave the principal and ShouldRenew completely untouched.
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var principal = AuthenticatedPrincipal();
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var (ctx, authService) = BuildContext(principal);
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await ServiceCollectionExtensions.ApplyValidationResultAsync(ctx, SessionValidationResult.Keep);
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Assert.Same(principal, ctx.Principal);
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Assert.False(ctx.ShouldRenew);
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Assert.Equal(0, authService.SignOutCallCount);
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}
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}
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#endregion
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#region M2.19 (#15): SecurityOptionsValidator — config-guard fails startup on misconfiguration
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/// <summary>
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/// Tests for <see cref="SecurityOptionsValidator"/>: the startup validator that prevents
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/// idle-timeout enforcement from being silently defeated by a misconfigured
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/// <c>RoleRefreshThresholdMinutes >= IdleTimeoutMinutes</c>.
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/// </summary>
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public class SecurityOptionsValidatorConfigGuardTests
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{
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private static SecurityOptions ValidOptions() => new()
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{
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JwtSigningKey = "this-is-a-test-signing-key-for-hmac-sha256-must-be-long-enough",
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IdleTimeoutMinutes = 30,
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RoleRefreshThresholdMinutes = 15,
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};
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[Fact]
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public void Validate_DefaultOptions_Succeeds()
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{
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var result = new SecurityOptionsValidator().Validate(name: null, ValidOptions());
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Assert.True(result.Succeeded);
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}
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[Fact]
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public void Validate_RefreshEqualsIdle_Fails()
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{
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// Equal is invalid: a refresh cycle at t=30 would advance LastActivity to t=30 which
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// equals the idle timeout — enforcement is defeated.
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var options = ValidOptions();
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options.RoleRefreshThresholdMinutes = options.IdleTimeoutMinutes; // 30 == 30
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var result = new SecurityOptionsValidator().Validate(name: null, options);
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Assert.True(result.Failed);
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Assert.Contains(nameof(SecurityOptions.RoleRefreshThresholdMinutes), result.FailureMessage);
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Assert.Contains(nameof(SecurityOptions.IdleTimeoutMinutes), result.FailureMessage);
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}
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[Fact]
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public void Validate_RefreshGreaterThanIdle_Fails()
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{
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// Inverted: refresh threshold LARGER than the idle window is clearly wrong and
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// must fail loudly at startup.
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var options = ValidOptions();
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options.RoleRefreshThresholdMinutes = 60; // 60 > 30
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var result = new SecurityOptionsValidator().Validate(name: null, options);
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Assert.True(result.Failed);
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Assert.Contains(nameof(SecurityOptions.RoleRefreshThresholdMinutes), result.FailureMessage);
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}
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[Fact]
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public void Validate_RefreshOneLessThanIdle_Succeeds()
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{
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// Boundary: threshold = idle - 1 is the tightest VALID configuration.
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var options = ValidOptions();
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options.IdleTimeoutMinutes = 30;
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options.RoleRefreshThresholdMinutes = 29;
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var result = new SecurityOptionsValidator().Validate(name: null, options);
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Assert.True(result.Succeeded);
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}
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[Fact]
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public void AddSecurity_RegistersSecurityOptionsValidator_WithValidateOnStart()
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{
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// End-to-end wiring: AddSecurity registers SecurityOptionsValidator as
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// IValidateOptions<SecurityOptions>. ValidateOnStart is what makes the DI container
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// call Validate on startup. We confirm the validator is present in the container.
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var services = new ServiceCollection();
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services.AddLogging();
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services.AddDataProtection();
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services.AddSecurity();
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using var provider = services.BuildServiceProvider();
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var validators = provider.GetServices<IValidateOptions<SecurityOptions>>().ToList();
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Assert.Contains(validators, v => v is SecurityOptionsValidator);
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}
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[Fact]
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public void AddSecurity_RegisteredValidator_DetectsMisconfiguration_WhenCalledDirectly()
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{
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// Confirm that the SecurityOptionsValidator registered by AddSecurity actually
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// catches a bad configuration. We resolve the validator from the container and
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// call it directly — the ValidateOnStart pipeline would fire the same validator
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// during IHost.StartAsync in a real deployment.
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var services = new ServiceCollection();
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services.AddLogging();
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services.AddDataProtection();
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services.AddSecurity();
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using var provider = services.BuildServiceProvider();
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var validator = provider.GetServices<IValidateOptions<SecurityOptions>>()
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.OfType<SecurityOptionsValidator>()
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.Single();
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// A configuration where RoleRefreshThreshold == IdleTimeout defeats idle enforcement.
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var badOptions = new SecurityOptions
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{
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JwtSigningKey = "this-is-a-test-signing-key-for-hmac-sha256-must-be-long-enough",
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IdleTimeoutMinutes = 30,
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RoleRefreshThresholdMinutes = 30, // == IdleTimeoutMinutes — invalid
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};
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var result = validator.Validate(name: null, badOptions);
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Assert.True(result.Failed);
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Assert.Contains(nameof(SecurityOptions.RoleRefreshThresholdMinutes), result.FailureMessage);
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}
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}
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#endregion
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