Stratara.Identity.EntityFrameworkCore 4.1.0

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See the version list below for details.
dotnet add package Stratara.Identity.EntityFrameworkCore --version 4.1.0
                    
NuGet\Install-Package Stratara.Identity.EntityFrameworkCore -Version 4.1.0
                    
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<PackageReference Include="Stratara.Identity.EntityFrameworkCore" Version="4.1.0" />
                    
For projects that support PackageReference, copy this XML node into the project file to reference the package.
<PackageVersion Include="Stratara.Identity.EntityFrameworkCore" Version="4.1.0" />
                    
Directory.Packages.props
<PackageReference Include="Stratara.Identity.EntityFrameworkCore" />
                    
Project file
For projects that support Central Package Management (CPM), copy this XML node into the solution Directory.Packages.props file to version the package.
paket add Stratara.Identity.EntityFrameworkCore --version 4.1.0
                    
#r "nuget: Stratara.Identity.EntityFrameworkCore, 4.1.0"
                    
#r directive can be used in F# Interactive and Polyglot Notebooks. Copy this into the interactive tool or source code of the script to reference the package.
#:package Stratara.Identity.EntityFrameworkCore@4.1.0
                    
#:package directive can be used in C# file-based apps starting in .NET 10 preview 4. Copy this into a .cs file before any lines of code to reference the package.
#addin nuget:?package=Stratara.Identity.EntityFrameworkCore&version=4.1.0
                    
Install as a Cake Addin
#tool nuget:?package=Stratara.Identity.EntityFrameworkCore&version=4.1.0
                    
Install as a Cake Tool

Stratara.Identity.EntityFrameworkCore

Derived. The behaviour described here is specified under openspec/specs/. Those specifications are the source; this page explains and illustrates them.

EF Core identity-directory plane for the Stratara stack: user↔tenant membership (many-to-many with tenant-scoped roles), active-tenant selection, and membership-backed authorization.

Contents

  • IdentityDirectoryDbContext<TContext> — standalone DbContext hosting all four directory tables (tenant_membership, active_tenant, setting_entry, api_key); derive a concrete context and own its migrations. To fold these into an existing context instead, call modelBuilder.ApplyIdentityDirectoryModel() in its OnModelCreating.
  • ModelBuilder.ApplyIdentityDirectoryModel() — adds the same tables to an existing context (for example your ASP.NET Identity context) so they share one migration lineage.
  • AddTenantMembershipStore<TContext>() — EF-backed ITenantMembershipStore: forward lookup (a user's tenants), reverse lookup (a tenant's members), upsert, GDPR sweeps per user/tenant, and membership-guarded active-tenant switching.
  • MembershipAuthorizationProvider / MembershipAuthorizationProvider<TUser> — the framework's default IAuthorizationProvider: role checks pass on tenant-scoped membership roles, the TUser variant additionally on global ASP.NET Identity roles (platform roles).
  • AddMembershipCrossTenantAuthorizer(...) — membership-backed ICrossTenantAuthorizer for strict tenant isolation, with configurable cross-tenant roles for the operator-impersonation path (platform administrators without membership in the target tenant).
  • AddPermissionCatalog(...) + AddCatalogPermissionResolver[<TUser>]() — the application's code-declared permission vocabulary with role grants, resolved from membership roles (and optionally global ASP.NET Identity roles) for [RequirePermission] enforcement and HTTP permission policies.
  • AddApiKeyStore<TContext>() — API keys and personal access tokens: stk_-prefixed 256-bit keys (hash-only storage), fail-closed validation with expiry/revocation, erasure sweeps. Machine keys are materialized as tenant memberships, so they flow through the same role/permission plane as human actors; PATs act as their bound user. ImportAsync stores a machine key the caller already holds (generated with ApiKeyFormat.CreateRawKey()) for setups where the key must exist before boot — idempotent, never mutating an already-stored key.
  • AddSettingCatalog(...) + AddSettingStore<TContext>() — scoped settings plane: code-declared SettingDefinitions, row-per-key EF storage (setting_entry), a Subject-fed ISettingProvider fallback chain (user-in-tenant → user → tenant → global → configuration → default), transparent AES-GCM encryption for IsEncrypted definitions, and per-user/per-tenant erasure sweeps.
  • AddTenantMembershipStoreFromContextFactory<TContext>(), AddApiKeyStoreFromContextFactory<TContext>(), AddSettingStoreFromContextFactory<TContext>() — the same three stores, taking a fresh context per operation from IDbContextFactory<TContext> instead of sharing the request's. See below.

One context for the request, or one per operation

The plain registrations give every directory store in a request the same context instance. A database context serves one operation at a time, so directory work issued concurrently inside one request fails on whichever operation arrives second — at the call site that lost the race, not the one that introduced the concurrency. Sharing also means a store's own commit commits whatever else the consumer has left unsaved on that context.

The …FromContextFactory variants remove both: each operation creates its own context and disposes it. In exchange, a store write no longer takes part in a transaction the consumer opened on their own scoped context. That trade is why the shared registration stays the default rather than being replaced.

They require AddDbContextFactory<TContext>(); a missing registration fails at first resolution. Keep the factory's options aligned with the scoped registration — interceptors, query filters and conventions are configured per registration, not per context type. Calling both variants for the same store leaves whichever ran first in place; they do not compose.

Dependencies

  • Microsoft.EntityFrameworkCore (+ Relational)
  • Microsoft.Extensions.Identity.Core
  • Stratara.Abstractions

Used together with Stratara.Mediator (authorizing mediator, tenant isolation) and Stratara.Identity.AspNetCore (sign-in claims bridge).

Product Compatible and additional computed target framework versions.
.NET net10.0 is compatible.  net10.0-android was computed.  net10.0-browser was computed.  net10.0-ios was computed.  net10.0-maccatalyst was computed.  net10.0-macos was computed.  net10.0-tvos was computed.  net10.0-windows was computed. 
Compatible target framework(s)
Included target framework(s) (in package)
Learn more about Target Frameworks and .NET Standard.

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Version Downloads Last Updated
4.2.0 46 9/18/2026
4.1.1 61 9/16/2026
4.1.0 78 9/16/2026
4.0.4 679 9/14/2026
4.0.3 112 9/3/2026
4.0.2 594 9/3/2026
4.0.1 225 9/2/2026
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3.4.0 135 8/28/2026
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3.2.3 104 8/22/2026
3.2.2 729 8/14/2026
3.2.1 360 8/2/2026
3.2.0 114 7/18/2026

The Orleans execution model ships as two new packages, `Stratara.Orleans` and
`Stratara.Orleans.EntityFrameworkCore`: one writer per aggregate across a cluster, accepted commands that
survive a crash, and projections and sagas that never miss a committed fact. Every host on the Entity
Framework store generates one migration when it upgrades, whether or not it adopts the execution model.
Telemetry type tags now carry the simple type name on every instrument, so a dashboard that filters the
projection, saga or conflict series on the qualified name needs its filter updated. Eight fixes land on
the retry, conflict, redaction and encryption work of 4.0.4, with one new warning to know about.

### Added

- **The Orleans execution model: `Stratara.Orleans` and `Stratara.Orleans.EntityFrameworkCore`.**
 Commands, projections, sagas, durable timers and singleton work run as virtual actors on an Orleans
 10.3 cluster. One aggregate has one writer across the deployment; a command the execution model's
 dispatcher accepts is recorded before the call returns and resumed after a crash, a bounded number of
 times, through the same mediator pipeline as on the bus; projections and sagas read the store in
 commit order from a checkpoint, so a crash costs latency and never a committed fact; singleton work
 runs once per cluster without a lock; a failing entry stops its partition and is retried instead of
 being dropped. Handlers, projections and sagas are unchanged, each role is adopted with one
 registration after its composite, and both models can run side by side during a rollout. Every
 setting is validated at start. See *Choose an Execution Model*, *Migrate to the Orleans Execution
 Model* and *Operate the Orleans Execution Model* on the documentation site.
- **Schema additions — every host on the Entity Framework store generates a migration.** The framework's
 write context declares `event_stream_entry.partition_position`, the `partition_position` table, on
 PostgreSQL `event_stream_entry.commit_transaction_id`, and the `outbox_entry` columns `aggregate_id`,
 `heavy`, `attempt_count`, `last_handed_over_at`, `kept_at` and `last_failure`; the read context declares
 `projection_checkpoint`. They are part of the model whether or not a host adopts the execution model, so
 every host on `Stratara.EventSourcing.EntityFrameworkCore` generates and applies a migration after
 upgrading — without it, appends and outbox writes fail on the missing columns. A store that never runs
 the execution model carries them unfilled; on PostgreSQL an append also reads back the transaction id.
- **Composites without the bus-fed worker.** `AddEventProjectionServices()` and `AddSagaServices()`
 register the projection and saga runtimes without their bus workers; `AddProjectionHandling` and
 `AddSagaHandling` do the same on `IServiceCollection`.
- **Every instrument name is a published constant.** `ApplicationDiagnostics.Metrics` carries a
 `…Name` constant beside each instrument — `EventsAppendedName`, `ProjectionEventsProcessedName`,
 `SagasInFlightName` and the others — so a query or listener references the name instead of a literal.
 `ApplicationDiagnostics.MetricTags.TypeNameValue` gives the value a type tag carries for a type name.
- `LogEvents.Messaging.WorkerQueueDeclaredWithOtherArguments` (`108_112`), the warning a RabbitMQ
 worker logs when it uses an existing queue declared with other arguments.

### Changed

- **`event.type` and `aggregate.type` carry the simple type name on every instrument.** On
 `projection.events.processed`, `saga.events.processed` and `event_source.append.conflicts` the tag
 value changes from the assembly-qualified name (`Shop.Orders.OrderPlaced, Shop.Orders`) to the simple
 name (`OrderPlaced`), the form `event_source.events.appended` already used, so write and read series
 join on the same value. A dashboard or alert that filters those three series on the qualified name
 needs its filter updated; no instrument or tag name changes.
- **`AddAuthorizingCommandOutboxDispatcher()` decorates whichever command dispatcher is registered**, not
 only the RabbitMQ one, and composes with a dispatcher registered after it.

### Fixed

- **RabbitMQ: changing the retry bounds no longer stops a worker from subscribing.** A worker queue
 carries `x-delivery-limit` from the bounds it was first declared with, and RabbitMQ refuses a
 redeclaration with a different value — so a deployment that changed `MessageRetry` failed every
 subscription with `PRECONDITION_FAILED`. An existing queue is now used as it is, and the bus logs
 `108_112` naming it. From RabbitMQ 4.3 the old limit does not cut the new bounds short; before 4.3
 a raised bound needs the drained queue deleted once.
- **Azure Service Bus: a subscription whose `MaxDeliveryCount` is below the bounds no longer hides
 its dead-lettering.** Where the host can read the subscription, the bounds for it are lowered to
 fit under the broker's limit, so the framework makes the move and it reaches `108_110` and
 `messaging.dead_lettered`. The warning `108_111` now says so. A failure to read the subscription
 of any kind other than cancellation ends the check instead of the subscription.
- **A unique violation is a concurrency conflict whatever exception type carries it.** The event
 source consulted the registered `IStoreConflictDetector`s only for an Entity Framework
 `DbUpdateException`, so a unit of work that surfaced the provider's exception unwrapped got a
 persistence failure instead of a `ConcurrencyException`. Every detector now sees the exception
 as the save threw it, as its contract says.
- **Proxy credentials and response cookies are redacted from traces in the form the semantic
 conventions name them.** The HTTP client and ASP.NET Core enrichment callbacks replaced
 `http.request.header.proxy_authorization` and `http.response.header.set_cookie`, but the
 OpenTelemetry semantic conventions keep the dash — `proxy-authorization`, `set-cookie` — so a host
 that captured headers under those names exported the values. Both forms are redacted now.
- **The concurrency-conflict policy retries a conflict the event source reports.** An append that
 lost the race surfaces from `IEventSource.SaveChangesAsync` as `ConcurrencyException`, and
 `ResilienceNames.ConcurrencyConflict` retried only `ConcurrencyConflictException` — so an
 `IResilientRequest` whose handler appends events ran once and failed on the first conflict. The
 policy now retries both, and still nothing else.
- **A revoked encrypted field of a value type reads as its default instead of failing the object.**
 Deserialization wrote an unreadable field back as JSON `null`, which a `decimal`, `int` or other
 non-nullable value type cannot hold — so erasing a subject's key made every record with such a
 field throw instead of degrading. The field now reads as the type's default, and the object's
 other fields are recovered.
- **`InMemoryKeyStore` keeps a scope usable after its current version is revoked.** Revoking the
 current key left the scope pointing at a key that no longer existed, so the next
 `GetOrCreateCurrentKeyAsync` threw. It now falls back to the highest remaining version, or creates
 a new one, as `EnvelopeFileKeyStore` does.
- **`IAggregationService.AggregateAsync` no longer documents `fromVersion` as a start version.** The
 parameter has never been honoured: a rebuild starts from the stream's beginning, or from the latest
 snapshot at or below `toVersion`. Its documentation now says so; the signature is unchanged.